diff options
Diffstat (limited to '14/CH12')
-rwxr-xr-x | 14/CH12/EX12.1/example_12_1.sce | 55 | ||||
-rwxr-xr-x | 14/CH12/EX12.1/result_ex_12_1.txt | 31 | ||||
-rwxr-xr-x | 14/CH12/EX12.2/example_12_2.sce | 60 | ||||
-rwxr-xr-x | 14/CH12/EX12.2/result_ex_12_2.txt | 27 | ||||
-rwxr-xr-x | 14/CH12/EX12.3/example_12_3.sce | 55 | ||||
-rwxr-xr-x | 14/CH12/EX12.3/result_ex_12_3.txt | 22 | ||||
-rwxr-xr-x | 14/CH12/EX12.4/example_12_4.sce | 77 | ||||
-rwxr-xr-x | 14/CH12/EX12.4/example_12_4.xcos | 1 | ||||
-rwxr-xr-x | 14/CH12/EX12.4/result_ex_12_4.txt | 75 | ||||
-rwxr-xr-x | 14/CH12/EX12.5/example_12_5.sce | 61 | ||||
-rwxr-xr-x | 14/CH12/EX12.5/result_ex_12_5.txt | 44 |
11 files changed, 508 insertions, 0 deletions
diff --git a/14/CH12/EX12.1/example_12_1.sce b/14/CH12/EX12.1/example_12_1.sce new file mode 100755 index 000000000..e5a00712a --- /dev/null +++ b/14/CH12/EX12.1/example_12_1.sce @@ -0,0 +1,55 @@ +//Chapter 12 +//Page 308 +//Example 12.1 +//1phasetogroundfault +clear;clc; +//Given +P = 20e6; +V = 13.8e3; +P_b = 20e6; +V_b = 13.8e3; +Z1 = %i * 0.25; +Z2 = %i * 0.35; +Z0 = %i * 0.10; +a = 1 * (cos(120 * %pi / 180) + %i * sin(120 * %pi / 180)); +//Calculations +Ea = V / V_b; +Ia1 = Ea / (Z0 + Z1 + Z2); +Ia2 = Ia1;Ia0 = Ia1; +Ia = 3 * Ia1; +I_b = P / (sqrt(3) * V); +Ia_1 = Ia * I_b; +printf("\n Base Current = %f A",I_b) +printf("\n Subtransient current in line a = -j%.0f A \n\n",abs(imag(Ia_1))) +//Symmetrical Components of voltage from point a to ground +Va1 = Ea - Ia1 * Z1; +Va2 = -Ia2 * Z2; +Va0 = -Ia0 * Z0; +disp('Symmetrical Components of voltage from point a to ground') +printf("\n Va1 = %.2f per unit",Va1) +printf("\n Va2 = %.2f per unit",Va2) +printf("\n Va0 = %.2f per unit \n\n",Va0) +//Line to ground voltages +Va = Va0 + Va1 + Va2; +Vb = Va0 + Va1 * a^2 + Va2 * a; +Vc = Va0 + Va2 * a^2 + Va1 * a; +disp('Line to ground voltages') +printf("\n Va = %.2f /_%.2f per unit",abs(Va),atan(imag(Va),real(Va))*180/%pi) +printf("\n Vb = %.2f /_%.2f per unit",abs(Vb),atan(imag(Vb),real(Vb))*180/%pi) +printf("\n Vc = %.2f /_%.2f per unit \n\n",abs(Vc),atan(imag(Vc),real(Vc))*180/%pi) +//Line to line voltages in per-unit are +Vab = Va - Vb; +Vbc = Vb - Vc; +Vca = Vc - Va; +disp('Line to line voltages in per-unit are') +printf("\n Vab = %.2f /_%.2f per unit",abs(Vab),atan(imag(Vab),real(Vab))*180/%pi) +printf("\n Vbc = %.2f /_%.2f per unit",abs(Vbc),atan(imag(Vbc),real(Vbc))*180/%pi) +printf("\n Vca = %.2f /_%.2f per unit \n\n",abs(Vca),atan(imag(Vca),real(Vca))*180/%pi) +//Line to line voltages in volts +Vab_1 = Vab * V / sqrt(3); +Vbc_1 = Vbc * V / sqrt(3); +Vca_1 = Vca * V / sqrt(3); +disp('Line to line voltages in volts') +printf("\n Vab = %.2f /_%.2f kV",abs(Vab_1)/1e3,atan(imag(Vab_1),real(Vab_1))*180/%pi) +printf("\n Vbc = %.2f /_%.2f kV",abs(Vbc_1)/1e3,atan(imag(Vbc_1),real(Vbc_1))*180/%pi) +printf("\n Vca = %.2f /_%.2f kV \n\n",abs(Vca_1)/1e3,atan(imag(Vca_1),real(Vca_1))*180/%pi)
\ No newline at end of file diff --git a/14/CH12/EX12.1/result_ex_12_1.txt b/14/CH12/EX12.1/result_ex_12_1.txt new file mode 100755 index 000000000..1ab37158e --- /dev/null +++ b/14/CH12/EX12.1/result_ex_12_1.txt @@ -0,0 +1,31 @@ + Base Current = 836.739521 A + Subtransient current in line a = -j3586 A + + + Symmetrical Components of voltage from point a to ground + + Va1 = 0.64 per unit + Va2 = -0.50 per unit + Va0 = -0.14 per unit + + + Line to ground voltages + + Va = 0.00 /_-180.00 per unit + Vb = 1.01 /_-102.22 per unit + Vc = 1.01 /_102.22 per unit + + + Line to line voltages in per-unit are + + Vab = 1.01 /_77.78 per unit + Vbc = 1.98 /_-90.00 per unit + Vca = 1.01 /_102.22 per unit + + + Line to line voltages in volts + + Vab = 8.07 /_77.78 kV + Vbc = 15.77 /_-90.00 kV + Vca = 8.07 /_102.22 kV + diff --git a/14/CH12/EX12.2/example_12_2.sce b/14/CH12/EX12.2/example_12_2.sce new file mode 100755 index 000000000..372d1eb72 --- /dev/null +++ b/14/CH12/EX12.2/example_12_2.sce @@ -0,0 +1,60 @@ +//Chapter 12 +//Page 311 +//Example 12.2 +//linetolinefault +clear;clc; +//Given +P = 20e6; +V = 13.8e3; +P_b = 20e6; +V_b = 13.8e3; +Z1 = %i * 0.25; +Z2 = %i * 0.35; +Z0 = %i * 0.10; +a = 1 * (cos(120 * %pi / 180) + %i * sin(120 * %pi / 180)); +//Calculations +Ea = V / V_b; +Ia1 = Ea / (Z1 + Z2); +Ia2 = - Ia1;Ia0 = 0; +Ia = Ia1 + Ia2 + Ia0; +Ib = a^2 * Ia1 + a*Ia2 + Ia0; +Ic = -Ib; +I_b = P / (sqrt(3) * V); +printf("\n Base Current = %f A",I_b) +Ia_1 = Ia * I_b; +Ib_1 = Ib * I_b; +Ic_1 = Ic * I_b; +printf("\n Subtransient current in line a = %.0f A",Ia_1) +printf("\n Subtransient current in line b = %.2f /_%.2f A",abs(Ib_1),atan(imag(Ib_1),real(Ib_1))*180 / %pi) +printf("\n Subtransient current in line c = %.2f /_%.2f A \n\n",abs(Ic_1),atan(imag(Ic_1),real(Ic_1))*180 / %pi) +////Symmetrical Components of voltage from point a to ground +Va1 = Ea - Ia1 * Z1; +Va2 = Va1; +Va0 = 0; +disp('Symmetrical Components of voltage from point a to ground') +printf("Va1 = %.2f per unit",Va1) +printf("\n Va2 = %.2f per unit",Va2) +printf("\n Va0 = %.2f per unit \n\n",Va0) +//Line to ground voltages +Va = Va0 + Va1 + Va2; +Vb = Va0 + Va1 * a^2 + Va2 * a; +Vc = Vb; +disp('Line to ground voltages') +printf("Va = %.2f /_%.2f per unit",abs(Va),atan(imag(Va),real(Va))*180/%pi) +printf("\n Vb = Vc = %.2f per unit \n\n",Vb) +//Line to line voltages in per-unit are +Vab = Va - Vb; +Vbc = Vb - Vc; +Vca = Vc - Va; +disp('Line to line voltages in per-unit are') +printf("Vab = %.2f /_%.2f per unit",abs(Vab),atan(imag(Vab),real(Vab))*180/%pi) +printf("\n Vbc = %.2f per unit",Vbc) +printf("\n Vca = %.2f /_%.2f per unit \n\n",abs(Vca),atan(imag(Vca),real(Vca))*180/%pi) +//Line to line voltages in volts +Vab_1 = Vab * V / sqrt(3); +Vbc_1 = Vbc * V / sqrt(3); +Vca_1 = Vca * V / sqrt(3); +disp('Line to line voltages in volts') +printf("Vab = %.2f /_%.2f kV",abs(Vab_1)/1e3,atan(imag(Vab_1),real(Vab_1))*180/%pi) +printf("\n Vbc = %.2f kV",Vbc_1) +printf("\n Vca = %.2f /_%.2f kV \n\n",abs(Vca_1)/1e3,atan(imag(Vca_1),real(Vca_1))*180/%pi)
\ No newline at end of file diff --git a/14/CH12/EX12.2/result_ex_12_2.txt b/14/CH12/EX12.2/result_ex_12_2.txt new file mode 100755 index 000000000..ace963503 --- /dev/null +++ b/14/CH12/EX12.2/result_ex_12_2.txt @@ -0,0 +1,27 @@ + Base Current = 836.739521 A + Subtransient current in line a = 0 A + Subtransient current in line b = 2415.46 /_180.00 A + Subtransient current in line c = 2415.46 /_-0.00 A + + + Symmetrical Components of voltage from point a to ground +Va1 = 0.58 per unit + Va2 = 0.58 per unit + Va0 = 0.00 per unit + + + Line to ground voltages +Va = 1.17 /_-0.00 per unit + Vb = Vc = -0.58 per unit + + + Line to line voltages in per-unit are +Vab = 1.75 /_-0.00 per unit + Vbc = 0.00 per unit + Vca = 1.75 /_180.00 per unit + + + Line to line voltages in volts +Vab = 13.94 /_-0.00 kV + Vbc = 0.00 kV + Vca = 13.94 /_180.00 kV diff --git a/14/CH12/EX12.3/example_12_3.sce b/14/CH12/EX12.3/example_12_3.sce new file mode 100755 index 000000000..1e607a823 --- /dev/null +++ b/14/CH12/EX12.3/example_12_3.sce @@ -0,0 +1,55 @@ +//Chapter 12 +//Page 314 +//Example 12.3 +//linetogroundfaultunloadedG +clear;clc; +//Given +P = 20e6; +V = 13.8e3; +P_b = 20e6; +V_b = 13.8e3; +Z1 = %i * 0.25; +Z2 = %i * 0.35; +Z0 = %i * 0.10; +a = 1 * (cos(120 * %pi / 180) + %i * sin(120 * %pi / 180)); +//Calculations +Ea = V / V_b; +Ia1 = Ea / (Z1 + (Z2*Z0)/(Z2+Z0)); +I_b = P / (sqrt(3) * V); +Va1 = Ea - Ia1 * Z1; +Va2 = Va1;Va0 = Va1; +Ia2 = - Va2 / Z2; +Ia0 = - Va0 / Z0; +Ia = Ia1 + Ia2 + Ia0; +Ib = a^2*Ia1 + a*Ia2 + Ia0; +Ic = a*Ia1 + a^2*Ia2 + Ia0; +In = 3 * Ia0; +Va = Va1 + Va2 + Va0; +Vb = 0; +Vc = 0; +disp('Line to ground voltages') +printf("Va = %.2f /_%.2f per unit",abs(Va),atan(imag(Va),real(Va))*180/%pi) +printf("\n Vb = Vc = %.0f per unit \n\n",Vb) +Vab = Va - Vb; +Vbc = Vb - Vc; +Vca = Vc - Va; +disp('Line to line voltages in per-unit are') +printf("Vab = %.2f per unit",Vab) +printf("\n Vbc = %.2f per unit",Vbc) +printf("\n Vca = %.2f per unit \n\n",Vca) +I_a1 = I_b * Ia; +I_b1 = I_b * Ib; +I_c1 = I_b * Ic; +I_n1 = I_b * In; +printf("\n Base Current = %f A",I_b) +printf("\n Subtransient current in line a = %.0f A",I_a1) +printf("\n Subtransient current in line b = %.0f /_%.2f A",abs(I_b1),atan(imag(I_b1),real(I_b1)) * 180 / %pi) +printf("\n Subtransient current in line c = %.0f /_%.2f A",abs(I_c1),atan(imag(I_c1),real(I_c1)) * 180 / %pi) +printf("\n Subtransient current in neutral = %.0f /_%.2f A \n\n",abs(I_n1),atan(imag(I_n1),real(I_n1)) * 180 / %pi) +Vab_1 = Vab * V / sqrt(3); +Vbc_1 = Vbc * V / sqrt(3); +Vca_1 = Vca * V / sqrt(3); +disp('Line to line voltages in volts') +printf("Vab = %.2f /_%.2f kV",abs(Vab_1)/1e3,atan(imag(Vab_1),real(Vab_1))*180/%pi) +printf("\n Vbc = %.2f kV",Vbc_1) +printf("\n Vca = %.2f /_%.2f kV \n\n",abs(Vca_1)/1e3,atan(imag(Vca_1),real(Vca_1))*180/%pi)
\ No newline at end of file diff --git a/14/CH12/EX12.3/result_ex_12_3.txt b/14/CH12/EX12.3/result_ex_12_3.txt new file mode 100755 index 000000000..19209df44 --- /dev/null +++ b/14/CH12/EX12.3/result_ex_12_3.txt @@ -0,0 +1,22 @@ + Line to ground voltages +Va = 0.71 /_-0.00 per unit + Vb = Vc = 0 per unit + + + Line to line voltages in per-unit are +Vab = 0.71 per unit + Vbc = 0.00 per unit + Vca = -0.71 per unit + + + Base Current = 836.739521 A + Subtransient current in line a = 0 A + Subtransient current in line b = 4021 /_132.22 A + Subtransient current in line c = 4021 /_47.78 A + Subtransient current in neutral = 5956 /_90.00 A + + + Line to line voltages in volts +Vab = 5.67 /_-0.00 kV + Vbc = 0.00 kV + Vca = 5.67 /_180.00 kV diff --git a/14/CH12/EX12.4/example_12_4.sce b/14/CH12/EX12.4/example_12_4.sce new file mode 100755 index 000000000..a50252018 --- /dev/null +++ b/14/CH12/EX12.4/example_12_4.sce @@ -0,0 +1,77 @@ +//Chapter 12 +//Page 321 +//Example 12.4 +//interconnected +clear;clc; +//Given +V_bus1 = 4.16e3; +V_bus_2 = 600; +Vm = 600; +n_m = 0.895; +Pop_m = 6000; +X11_m = 0.2;X_2_m = 0.20;X_0_m = 0.04;X_n_m= 0.02; +Vtr_ht = sqrt(3) * 2400;Vtr_lt = 600;Ptr =3 * 2500e3; +X11_tr = 0.10; +Pg = 7500e3;Vg = 4.16e3; +X11_g = 0.10;X_2_g = 0.10;X_0_g = 0.05;X_n_g = 0.05; +//At the time of fault +Pload = 5000;pf_load = 0.85;n_load = 0.88; +Vbase_sysbus = Vg;Pbase_sysbus = Pg; +Vbase_m = Vtr_lt;Pbase_m = Ptr; +Pin_m =(Pop_m * 0.746) * 1e3/ n_m; +printf("\n Input Rating of the single equivalent motor = %.0f kVA \n",Pin_m) +X11_m_new = X11_m * Pbase_m / Pin_m; +X_2_m_new = X_2_m * Pbase_m / Pin_m; +X_0_m_new = X_0_m * Pbase_m / Pin_m; +X_n_m_new = 3 * X_n_m * Pbase_m / Pin_m; +disp('For Motor') +printf("\nX11 = %.1f per unit\n X_2 = %.1f per unit\n X_0 = %0.2f per unit\n 3X_n = %.2f per unit\n",X11_m_new,X_2_m_new,X_0_m_new,X_n_m_new) +printf("\n The equivalent generator reactance from neutral to ground in the zero-sequence network = %.2f per unit\n",3*X_0_g) +Vf = 1 * (cos(0) + %i * sin(0)); +Ibase_m = Pbase_m / (sqrt(3) * Vbase_m); +printf("\n Base current in motor circuit = %.0f \n\n",Ibase_m) +Iactual_m = 746 * Pload / (n_load * sqrt(3) * Vbase_m * pf_load); +magIa = Iactual_m / Ibase_m; +angleIa = - acos(0.85); +Ia_prefault = magIa * (cos(angleIa) + %i * sin(angleIa)); +printf("\n Prefault current through line a = %.3f - j%.3f per unit\n\n",real(Ia_prefault),abs(imag(Ia_prefault))) +Eg_11 = 1;Em_11 = 1; +Z1 = ((%i * X11_g + %i * X_2_g) * (%i * X11_m_new)) / (%i * (X11_g + X_2_g + X11_m_new)); +Z2 = Z1;Z0 = 3 * %i * X_0_g; +printf("\n\n Z1 = j%.2f per unit\n Z2 = j%.2f per unit\n Z0 = j%.2f per unit\n",abs(Z1),abs(Z2),abs(Z0)) +Ia1 = Vf / (Z1 + Z2 + Z0); +Ia2 = Ia1;Ia0 = Ia1; +Ia_fault = 3 * Ia0; +printf("\n Current Ia in fault = -j%.3f per unit \n",abs(Ia_fault)) +Ia1_tr = Ia1 * (%i * X11_m_new) / (%i * X11_m_new + %i * X11_g + %i * X_2_g); +Ia1_m = Ia1 * (%i * X11_g + %i * X_2_g ) / (%i *X11_m_new + %i * X11_g + %i * X_2_g); +a = 1 * (cos(120 * %pi / 180) + %i * sin(120 * %pi / 180)); +A = [ 1 1 1; 1 a^2 a ; 1 a a^2]; +Ia_tr = [ 0 ;Ia1_tr ;Ia1_tr]; +I_tr = A * Ia_tr; +disp('Currents in the line at the fault from the transformer in the order Ia,Ib,Ic in per unit are') +disp(I_tr) +disp('Currents in the line at the fault from the transformer in the order Ia,Ib,Ic in A are') +disp(abs(I_tr) * Ibase_m) +Ia_m = [Ia1 ; Ia1_m ; Ia1_m]; +I_m = A * Ia_m; +disp('Currents in the line at the fault from the motor in the order Ia,Ib,Ic in per unit are') +disp(I_m) +disp('Currents in the line at the fault from the motor in the order Ia,Ib,Ic in A are') +disp(abs(I_m) * Ibase_m) +I_A1 = -%i * Ia1_tr;I_A2 = %i * Ia1_tr;I_a0 = 0; +I_A = I_A1 + I_A2; +I_B1 = a^2 * I_A1;I_B2 = a * I_A2; +I_B = I_B1 + I_B2; +I_C1 = a * I_A1;I_C2 = a^2 * I_A2; +I_C = I_C1 + I_C2; +disp('Per Units currents in the order I_A,I_B,I_C in per unit are') +disp(I_A);disp(I_B);disp(I_C); +Ibase_ht = Ptr / (sqrt(3) * Vtr_ht); +disp('Per Units currents in the order I_A,I_B,I_C in A are') +disp(abs(I_A) * Ibase_ht);disp(abs(I_B) * Ibase_ht);disp(abs(I_C) * Ibase_ht); +disp('Under loaded conditions') +disp('Current from transformer to the fault phase a') +disp(Ia_prefault + Ia1_tr) +disp('Current from motor to the fault phase a') +disp(- Ia_prefault + Ia1_m)
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\ No newline at end of file diff --git a/14/CH12/EX12.4/result_ex_12_4.txt b/14/CH12/EX12.4/result_ex_12_4.txt new file mode 100755 index 000000000..5a31f4262 --- /dev/null +++ b/14/CH12/EX12.4/result_ex_12_4.txt @@ -0,0 +1,75 @@ + + + Input Rating of the single equivalent motor = 5001117 kVA + + For Motor + +X11 = 0.3 per unit + X_2 = 0.3 per unit + X_0 = 0.06 per unit + 3X_n = 0.09 per unit + + The equivalent generator reactance from neutral to ground in the zero-sequence network = 0.15 per unit + + Base current in motor circuit = 7217 + + + Prefault current through line a = 0.565 - j0.350 per unit + + + + Z1 = j0.12 per unit + Z2 = j0.12 per unit + Z0 = j0.15 per unit + + Current Ia in fault = -j7.693 per unit + + Currents in the line at the fault from the transformer in the order Ia,Ib,Ic in per unit are + + - 3.0768173i + 6.661D-16 + 1.5384086i + 6.661D-16 + 1.5384086i + + Currents in the line at the fault from the transformer in the order Ia,Ib,Ic in A are + + 22205.016 + 11102.508 + 11102.508 + + Currents in the line at the fault from the motor in the order Ia,Ib,Ic in per unit are + + - 4.6159135i + 3.331D-16 - 1.5384086i + 3.331D-16 - 1.5384086i + + Currents in the line at the fault from the motor in the order Ia,Ib,Ic in A are + + 33312.486 + 11102.508 + 11102.508 + + Per Units currents in the order I_A,I_B,I_C in per unit are + + 0 + + 8.882D-16 + 2.6646019i + + - 8.882D-16 - 2.6646019i + + Per Units currents in the order I_A,I_B,I_C in A are + + 0. + + 2775.627 + + 2775.627 + + Under loaded conditions + + Current from transformer to the fault phase a + + 0.5651515 - 1.8886581i + + Current from motor to the fault phase a + + - 0.5651515 - 0.6755855i diff --git a/14/CH12/EX12.5/example_12_5.sce b/14/CH12/EX12.5/example_12_5.sce new file mode 100755 index 000000000..af5f32eb1 --- /dev/null +++ b/14/CH12/EX12.5/example_12_5.sce @@ -0,0 +1,61 @@ +//Chapter 12 +//Page 329 +//Example 12.5 +//busimpedancematrix +clear;clc; +//Given +V_bus1 = 4.16e3; +V_bus_2 = 600; +Vm = 600; +n_m = 0.895; +Pop_m = 6000; +X11_m = %i * 0.2;X_2_m = %i * 0.20;X_0_m = %i * 0.04;X_n_m= %i * 0.02; +Vtr_ht = sqrt(3) * 2400;Vtr_lt = 600;Ptr =3 * 2500e3; +X11_tr = %i * 0.10; +Pg = 7500e3;Vg = 4.16e3; +X11_g = %i * 0.10;X_2_g = %i * 0.10;X_0_g = %i * 0.05;X_n_g = %i * 0.05; +//At the time of fault +Pload = 5000;pf_load = 0.85;n_load = 0.88; +Vbase_sysbus = Vg;Pbase_sysbus = Pg; +Vbase_m = Vtr_lt;Pbase_m = Ptr; +Pin_m =(Pop_m * 0.746) * 1e3/ n_m; +X11_m_new = X11_m * Pbase_m / Pin_m; +X_2_m_new = X_2_m * Pbase_m / Pin_m; +X_0_m_new = X_0_m * Pbase_m / Pin_m; +X_n_m_new = 3 * X_n_m * Pbase_m / Pin_m; +X_n_g_new = 3 * X_n_g; +Y1 = zeros(2,2);Y2 = zeros(2,2);Y0 = zeros(2,2); +Y1(1,1) = 1/X11_g + 1/X11_m_new;Y2(1,1) = Y1(1,1); +Y1(1,2) = - 1 / X11_g;Y2(1,2) = Y1(1,2); +Y1(2,2) = 1/X11_g + 1/X_2_g;Y2(2,2) = Y1(2,2) +Y1(2,1) = Y1(1,2);Y2(2,1) = Y2(1,2); +Y0(1,1) = 1 / X_n_g_new; +Y0(2,2) = 1/X11_m + 1/X_2_g; +disp('Y_bus1 = Y_bus2 = ') +disp(Y2) +disp('Y_bus0 = ') +disp(Y0) +Z1 = inv(Y1);Z2 = inv(Y2);Z0 = inv(Y0); +disp('Z_bus1 = Z_bus2 = ') +disp(Z1) +disp('Z_bus0 = ') +disp(Z0) +Vf = 1 * (cos(0) + %i * sin(0)); +If_bus1 = 3 * Vf / (Z1(1,1) + Z2(1,1) + Z0(1,1)); +disp(If_bus1,'The current in fault on bus 1 in per unit is') +If_bus2 = 3 * Vf / (Z1(2,2) + Z2(2,2) + Z0(2,2)); +disp(If_bus2,'The current in fault on bus 2 in per unit is') +Ia_1 =If_bus1 / 3;Ia_2 = Ia_1;Ia_0 = Ia_1; +Va1 = Vf - (Z1(2,1) * Ia_1); +Va2 = - Ia_2 * Z2(2,1); +Va0 = - Ia_0 * Z0(2,1); +disp('Sequence components of phase A in the order Va1,Va2,Va0 in per unit are') +disp(Va1);disp(Va2);disp(Va0) +VA1 = -%i *Va1; +VA2 = %i *Va2; +VA = VA1 + VA2; +a = 1 * (cos(120 * %pi / 180) + %i * sin(120 * %pi / 180)); +VB = a^2 * VA1 + a * VA2; +VC = a * VA1 + a^2 * VA2; +disp('Currents in phases in the order VA,VB,VC in per unit are') +disp(VA);disp(VB);disp(VC) diff --git a/14/CH12/EX12.5/result_ex_12_5.txt b/14/CH12/EX12.5/result_ex_12_5.txt new file mode 100755 index 000000000..43d30f0e4 --- /dev/null +++ b/14/CH12/EX12.5/result_ex_12_5.txt @@ -0,0 +1,44 @@ + + Y_bus1 = Y_bus2 = + + - 13.334078i 10.i + 10.i - 20.i + + Y_bus0 = + + - 6.6666667i 0 + 0 - 15.i + + Z_bus1 = Z_bus2 = + + 0.1199893i 0.0599946i + 0.0599946i 0.0799973i + + Z_bus0 = + + 0.15i 0 + 0 0.0666667i + + The current in fault on bus 1 in per unit is + + - 7.6927308i + + The current in fault on bus 2 in per unit is + + - 13.235607i + + Sequence components of phase A in the order Va1,Va2,Va0 in per unit are + + 0.8461591 + + - 0.1538409 + + 0 + + Currents in phases in the order VA,VB,VC in per unit are + + - i + + - 0.5995652 + 0.5i + + 0.5995652 + 0.5i |