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<?xml version="1.0" encoding="UTF-8"?>

<!--
 *
 * This help file was generated from sos2cell.sci using help_from_sci().
 *
 -->

<refentry version="5.0-subset Scilab" xml:id="sos2cell" xml:lang="en"
          xmlns="http://docbook.org/ns/docbook"
          xmlns:xlink="http://www.w3.org/1999/xlink"
          xmlns:svg="http://www.w3.org/2000/svg"
          xmlns:ns3="http://www.w3.org/1999/xhtml"
          xmlns:mml="http://www.w3.org/1998/Math/MathML"
          xmlns:scilab="http://www.scilab.org"
          xmlns:db="http://docbook.org/ns/docbook">

  <refnamediv>
    <refname>sos2cell</refname>
    <refpurpose>Converts a second order section matrix to a cell array</refpurpose>
  </refnamediv>


<refsection>
   <title>Parameters</title>
   <variablelist>
   </variablelist>
</refsection>

<refsection>
   <title>Description</title>
   <para>
c=sos2cell(s) converts an L-by-6 second-order-section matrix s given by:
s =   [B1 A1
B2 A2
...
BL AL]
to a cell array c = { {B1},{A1}, {B2},{A2}, ... {BL},{AL}} where each
numerator vector Bi and denominator vector Ai contains the coefficients of a
linear or quadratic polynomial. If the polynomial is linear, the coefficients
zero-padded on the right
c=sos2cell(s,g) adds a leading gain term to the start of the cell array as:
c={ {[g,1]},{B1},{A1}, {B2},{A2}, ... {BL},{AL}}
Example
s=rand(2,6)
s  =
   </para>
   <para>
   </para>
   <para>
column 1 to 5
   </para>
   <para>
0.0437334    0.2639556    0.2806498    0.7783129    0.1121355
0.4818509    0.4148104    0.1280058    0.2119030    0.6856896
   </para>
   <para>
column 6
   </para>
   <para>
0.1531217
0.6970851
   </para>
   <para>
sos2cell(s,2)
ans  =
   </para>
   <para>
   </para>
   <para>
   </para>
   <para>
column 1 to 3
   </para>
   <para>
![2,1]  [0.0437334,0.2639556,0.2806498]  [0.7783129,0.1121355,0.1531217]  !
   </para>
   <para>
column 4 to 5
   </para>
   <para>
![0.4818509,0.4148104,0.1280058]  [0.2119030,0.6856896,0.6970851]  !
Author
Ankur Mallick
</para>
</refsection>
</refentry>