<dd><p>The gated unit layer implements a simple gating mechanism over the input.
The input <spanclass="math">\(X\)</span> is first projected into a new space <spanclass="math">\(X'\)</span>, and
it is also used to produce a gate weight <spanclass="math">\(\sigma\)</span>. Element-wise
prodict between <ahref="#id6"><spanclass="problematic"id="id7">:match:`X’`</span></a> and <spanclass="math">\(\sigma\)</span> is finally returned.</p>
prodict between <ahref="#id12"><spanclass="problematic"id="id13">:match:`X’`</span></a> and <spanclass="math">\(\sigma\)</span> is finally returned.</p>
<dlclass="docutils">
<dt>Reference:</dt>
<dd>Language Modeling with Gated Convolutional Networks
<dd><p>The gated unit layer implements a simple gating mechanism over the input.
The input <spanclass="math">\(X\)</span> is first projected into a new space <spanclass="math">\(X'\)</span>, and
it is also used to produce a gate weight <spanclass="math">\(\sigma\)</span>. Element-wise
prodict between <ahref="#id6"><spanclass="problematic"id="id7">:match:`X’`</span></a> and <spanclass="math">\(\sigma\)</span> is finally returned.</p>
prodict between <ahref="#id12"><spanclass="problematic"id="id13">:match:`X’`</span></a> and <spanclass="math">\(\sigma\)</span> is finally returned.</p>
<dlclass="docutils">
<dt>Reference:</dt>
<dd>Language Modeling with Gated Convolutional Networks