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  <title><![CDATA[Ph.D. Dissertation Defense - Kaitlin Fair]]></title>
  <body><![CDATA[<p><strong>Title</strong><em>:&nbsp; </em><em>A Biologically Plausible Sparse Approximation Solver on Neuromorphic Hardware</em></p>

<p><strong>Committee:</strong></p>

<p>Dr. David Anderson, ECE, Chair , Advisor</p>

<p>Dr. Justin Romberg, ECE</p>

<p>Dr. Christopher Rozell, ECE</p>

<p>Dr. Mark Davenport, ECE</p>

<p>Dr. Andreas Andreou, Johns Hopkins</p>

<p><strong>Abstract: </strong></p>

<p>This work delivers a neuromorphic system that solves for the sparse approximation on hardware geared toward real-world embedded systems signal processing applications.&nbsp; We choose to explore the biologically-plausible Locally Competitive Algorithm (LCA), a neural network that solves the sparse approximation problem.&nbsp; We implement this algorithm on the brain-inspired IBM Neurosynaptic System, also known as the TrueNorth chip, a specialized hardware platform that has shown success in deploying neural networks for signal processing applications.</p>
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