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+<html><head>
+ <meta http-equiv="Content-Type" content="text/html; charset=utf-8">
+ <title>ellip</title>
+ <style type="text/css" media="all">
+ @import url("scilab_code.css");
+ @import url("xml_code.css");
+ @import url("c_code.css");
+ @import url("style.css");
+ </style>
+ </head>
+ <body>
+ <div class="manualnavbar">
+ <table width="100%"><tr>
+ <td width="30%">
+ <span class="previous"><a href="dwt.html">&lt;&lt; dwt</a></span>
+
+ </td>
+ <td width="40%" class="center">
+ <span class="top"><a href="section_cc2bc01c47967d47fcf3507a91d572ba.html">FOSSEE Signal Processing Toolbox</a></span>
+
+ </td>
+ <td width="30%" class="next">
+ <span class="next"><a href="ellipap.html">ellipap &gt;&gt;</a></span>
+
+ </td>
+ </tr></table>
+ <hr />
+ </div>
+
+
+
+ <span class="path"><a href="index.html">FOSSEE Signal Processing Toolbox</a> &gt;&gt; <a href="section_cc2bc01c47967d47fcf3507a91d572ba.html">FOSSEE Signal Processing Toolbox</a> &gt; ellip</span>
+
+ <br /><br />
+ <div class="refnamediv"><h1 class="refname">ellip</h1>
+ <p class="refpurpose">This function generates an elliptic or Cauer filter with rp dB of passband ripple and rs dB of stopband attenuation.</p></div>
+
+
+<div class="refsynopsisdiv"><h3 class="title">Calling Sequence</h3>
+ <div class="synopsis"><pre><span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (</span><span class="default">n</span><span class="default">, </span><span class="default">rp</span><span class="default">, </span><span class="default">rs</span><span class="default">, </span><span class="default">wp</span><span class="default">)</span>
+<span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (</span><span class="default">n</span><span class="default">, </span><span class="default">rp</span><span class="default">, </span><span class="default">rs</span><span class="default">, </span><span class="default">wp</span><span class="default">, </span>&#0034;<span class="default">high</span>&#0034;<span class="default">)</span>
+<span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (</span><span class="default">n</span><span class="default">, </span><span class="default">rp</span><span class="default">, </span><span class="default">rs</span><span class="default">, [</span><span class="default">wl</span><span class="default">, </span><span class="default">wh</span><span class="default">])</span>
+<span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (</span><span class="default">n</span><span class="default">, </span><span class="default">rp</span><span class="default">, </span><span class="default">rs</span><span class="default">, [</span><span class="default">wl</span><span class="default">, </span><span class="default">wh</span><span class="default">], </span>&#0034;<span class="default">stop</span>&#0034;<span class="default">)</span>
+<span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">, </span><span class="default">c</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (…)</span>
+<span class="default">[</span><span class="default">a</span><span class="default">, </span><span class="default">b</span><span class="default">, </span><span class="default">c</span><span class="default">, </span><span class="default">d</span><span class="default">] = </span><span class="functionid">ellip</span><span class="default"> (…)</span>
+<span class="default">[…] = </span><span class="functionid">ellip</span><span class="default"> (…, </span>&#0034;<span class="default">s</span>&#0034;<span class="default">)</span></pre></div></div>
+
+<div class="refsection"><h3 class="title">Parameters</h3>
+ <dl><dt><span class="term">n:</span>
+ <dd><p class="para">positive integer value</p></dd></dt>
+ <dt><span class="term">rp:</span>
+ <dd><p class="para">non negative scalar value</p></dd></dt>
+ <dt><span class="term">rs:</span>
+ <dd><p class="para">non negative scalar value</p></dd></dt>
+ <dt><span class="term">w:</span>
+ <dd><p class="para">scalar or vector, all elements should be in the range [0,1]</p></dd></dt></dl></div>
+
+<div class="refsection"><h3 class="title">Description</h3>
+ <p class="para">This is an Octave function.
+This function generates an elliptic or Cauer filter with rp dB of passband ripple and rs dB of stopband attenuation.
+[b, a] = ellip(n, Rp, Rs, Wp) indicates low pass filter with order n, Rp decibels of ripple in the passband and a stopband Rs decibels down and cutoff of pi*Wp radians. If the fifth argument is high, then the filter is a high pass filter.
+[b, a] = ellip(n, Rp, Rs, [Wl, Wh]) indictaes band pass filter with band pass edges pi*Wl and pi*Wh. If the fifth argument is stop, the filter is a band reject filter.
+[z, p, g] = ellip(...) returns filter as zero-pole-gain.
+[...] = ellip(...,’s’) returns a Laplace space filter, w can be larger than 1.
+[a, b, c, d] = ellip(...) returns state-space matrices.</p></div>
+
+<div class="refsection"><h3 class="title">Examples</h3>
+ <div class="programlisting"><table border="0" width="100%"><tr><td width="98%"><pre class="scilabcode"><span class="scilabopenclose">[</span><span class="scilabid">a</span><span class="scilabdefault">,</span><span class="scilabid">b</span><span class="scilabopenclose">]</span><span class="scilaboperator">=</span><span class="scilabid">ellip</span><span class="scilabopenclose">(</span><span class="scilabnumber">2</span><span class="scilabdefault">,</span> <span class="scilabnumber">0.5</span><span class="scilabdefault">,</span> <span class="scilabnumber">0.7</span><span class="scilabdefault">,</span> <span class="scilabopenclose">[</span><span class="scilabnumber">0.3</span><span class="scilabdefault">,</span><span class="scilabnumber">0.4</span><span class="scilabopenclose">]</span><span class="scilabopenclose">)</span>
+<span class="scilabid">a</span> <span class="scilaboperator">=</span>
+<span class="scilabnumber">0.88532</span> <span class="scilaboperator">-</span><span class="scilabnumber">1.58410</span> <span class="scilabnumber">2.40380</span> <span class="scilaboperator">-</span><span class="scilabnumber">1.58410</span> <span class="scilabnumber">0.88532</span>
+<span class="scilabid">b</span> <span class="scilaboperator">=</span>
+<span class="scilabnumber">1.00000</span> <span class="scilaboperator">-</span><span class="scilabnumber">1.78065</span> <span class="scilabnumber">2.68703</span> <span class="scilaboperator">-</span><span class="scilabnumber">1.75725</span> <span class="scilabnumber">0.97454</span></pre></td><td valign="top"><a href="scilab://scilab.execexample/"><img src="ScilabExecute.png" border="0"/></a></td><td valign="top"><a href="scilab://scilab.editexample/"><img src="ScilabEdit.png" border="0"/></a></td><td></td></tr></table></div></div>
+ <br />
+
+ <div class="manualnavbar">
+ <table width="100%">
+ <tr><td colspan="3" class="next"><a href="http://bugzilla.scilab.org/enter_bug.cgi?product=Scilab%20software&component=Documentation%20pages" class="ulink">Report an issue</a></td></tr>
+<tr>
+ <td width="30%">
+ <span class="previous"><a href="dwt.html">&lt;&lt; dwt</a></span>
+
+ </td>
+ <td width="40%" class="center">
+ <span class="top"><a href="section_cc2bc01c47967d47fcf3507a91d572ba.html">FOSSEE Signal Processing Toolbox</a></span>
+
+ </td>
+ <td width="30%" class="next">
+ <span class="next"><a href="ellipap.html">ellipap &gt;&gt;</a></span>
+
+ </td>
+ </tr></table>
+ <hr />
+ </div>
+ </body>
+</html>