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

<!--
 *
 * This help file was generated from is2rc.sci using help_from_sci().
 *
 -->

<refentry version="5.0-subset Scilab" xml:id="is2rc" 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>is2rc</refname>
    <refpurpose>Convert inverse sine parameters to reflection coefficients</refpurpose>
  </refnamediv>


<refsynopsisdiv>
   <title>Calling Sequence</title>
   <synopsis>
   K = is2rc(isin)
   
   </synopsis>
</refsynopsisdiv>

<refsection>
   <title>Parameters</title>
   <variablelist>
   <varlistentry><term>isin:</term>
      <listitem><para> input inverse sine parameters. Needs to be an array real numbers</para></listitem></varlistentry>
   <varlistentry><term>k:</term>
      <listitem><para> output reflection coefficients  corresponding to the reflection coefficients in input</para></listitem></varlistentry>
   </variablelist>
</refsection>

<refsection>
   <title>Description</title>
   <para>
This function returns a vector of reflection coefficients from a vector of inverse sine parameters
output array has k(i) = sin(pi/2*isin(i))
   </para>
   <para>
Example
k = [0.3090 0.9801 0.0031 0.0082 -0.0082];
isin = rc2is(k)      //Gives inverse sine parameters
k_dash = is2rc(isin)
   </para>
   <para>
</para>
</refsection>

<refsection>
   <title>See also</title>
   <simplelist type="inline">
   <member><link linkend="rc2is">rc2is</link></member>
   <member><link linkend="rc2poly">rc2poly</link></member>
   <member><link linkend="rc2ac">rc2ac</link></member>
   <member><link linkend="rc2lar">rc2lar</link></member>
   <member><link linkend="Author">Author</link></member>
   <member><link linkend="Parthe">Pandit</link></member>
   </simplelist>
</refsection>

<refsection>
   <title>Bibliography</title>
   <para>J.R. Deller, J.G. Proakis, J.H.L. Hansen, "Discrete-Time Processing of Speech Signals", Prentice Hall, Section 7.4.5</para>
</refsection>
</refentry>