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  <title><![CDATA[Ph.D. Thesis Proposal:  Lee Whitcher]]></title>
  <body><![CDATA[<p><strong>PhD Thesis Proposal by</strong></p>

<h2><strong>Lee Whitcher</strong></h2>

<p><strong>(Advisor: Dr. Eric N. Johnson)</strong></p>

<p><strong>Monday, August 7th, 2017 @ 9am</strong><br />
<strong><em>Montgomery-Knight Building, Room 317</em></strong></p>

<h2><strong>&ldquo;Design Considerations for the Control and Performance Optimization of a VTOL UAV Using the Coanda Effect&rdquo;</strong></h2>

<p><strong>Abstract:</strong></p>

<p>The Coanda effect is a phenomenon of fluid dynamics whereby a jet exhibits a strong tendency to become attached to, and flow around, a nearby surface. Vertical Takeoff and Landing (VTOL) Unmanned Aerial Vehicles (UAVs) utilizing the Coanda effect for lift generation have a number of potential benefits, including: (a) the creation of a large aerodynamically-neutral payload/systems bays, (b) a high payload-carrying ability for its size, and (c) the use of an enclosed rotor, enabling it to withstand contact with its surroundings.</p>

<p>Coanda effect UAVs have undergone some study, but remain a largely under-investigated and certainly un-optimized VTOL configuration. This proposed research aims to address this by:</p>

<ul>
	<li>Developing a physics-based model for the aircraft&rsquo;s flight dynamics</li>
	<li>Developing a robust flight controller for hover and low-speed flight</li>
	<li>Developing analytical and numerical methods to predict performance characteristics</li>
	<li>Incorporating this knowledge into an optimization strategy for maximizing the aircraft&rsquo;s potential as a safer VTOL UAV for use in urban and otherwise challenging environments</li>
	<li>Validating all of the above works with experimental data gained from static and flight tests</li>
</ul>

<p><strong>Committee:</strong><br />
Dr. Eric N. Johnson, <em>School of Aerospace Engineering, Georgia Institute of Technology</em><br />
Dr. Daniel P. Schrage, <em>School of Aerospace Engineering, Georgia Institute of Technology</em><br />
Dr. J.V.R. Prasad, <em>School of Aerospace Engineering, Georgia Institute of Technology</em><br />
Dr. Magnus Egerstedt, <em>School of Aerospace Engineering, Georgia Institute of Technology</em><br />
Dr. Tony J. Dodd, <em>Dept.of Automatic Control and Systems Engineering, University of Sheffield (UK)</em><br />
Dr. Suraj Unnikrishnan, <em>Lockheed Martin Sikorsky</em></p>
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