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3.
Surface classification via unmanned aerial vehicles gripper finger deflection
by Van Hoosear, Christopher A., M.S.Eng.  University of the Pacific. 2013: 88 pages; 1548752.
4.
Unmanned Undersea Vehicles: The Navy's New Platforms Need a Tailored Environmental Law Framework
by Hoy, Cara Addison, LL.M.  The George Washington University. 2018: 70 pages; 10821870.
5.
Sea Ice Topography Profiling using Laser Altimetry from Small Unmanned Aircraft Systems
by Crocker, Roger Ian, Ph.D.  University of Colorado at Boulder. 2012: 200 pages; 3527279.
6.
Use of Model-Based Design Methods for Enhancing Resiliency Analysis of Unmanned Aerial Vehicles
by Knox, Lenora A., D.Engr.  The George Washington University. 2017: 154 pages; 10265223.
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Determination of Power Required through Accelerated Flight with Application to Unmanned Vehicles
by Soltmann, Lars Michael, Ph.D.  North Carolina State University. 2016: 102 pages; 10585502.
9.
Physics Preserving Model Simplification for Interactive Virtual Environments
by Thakur, Atul, Ph.D.  University of Maryland, College Park. 2011: 242 pages; 3495355.
10.
Stream function path planning and control for unmanned ground vehicles
by Daily, Robert L., Ph.D.  Auburn University. 2008: 188 pages; 3333176.
11.
Attack of the drones: Unmanned Aerial Vehicles and moral problems
by Kirk, Tyler B., M.A.  State University of New York at Albany. 2014: 45 pages; 1555262.
14.
Real time target allocation in cooperative unmanned aerial vehicles
by Kudleppanavar, Ganesh, M.S.  California State University, Long Beach. 2015: 41 pages; 1603968.
16.
Nonlinear Tracking Control of Underactuated Autonomous Vehicles
by Fetzer, Karl Ludwig, Ph.D.  Villanova University. 2018: 156 pages; 13424705.
17.
Low-Altitude Operation of Unmanned Rotorcraft
by Scherer, Sebastian, Ph.D.  Carnegie Mellon University. 2011: 123 pages; 3468040.
18.
Semi-Autonomous Small Unmanned Aircraft Systems for Sampling Tornadic Supercell Thunderstorms
by Elston, Jack S., Ph.D.  University of Colorado at Boulder. 2011: 293 pages; 3453706.
19.
Design, development and applications of a framework for autonomous vehicle operations
by Diz, Martin, Ph.D.  State University of New York at Buffalo. 2015: 315 pages; 3714585.
22.
Uninhabited Aerial Vehicles and Structure from Motion: A fresh approach to photogrammetry
by Nesbit, Paul R., M.A.  California State University, Long Beach. 2014: 177 pages; 1526938.
23.
Unmanned Aerial Vehicle Based Structure from Motion Biomass Inventory Estimates
by Bedell, Emily Jane, M.S.  Portland State University. 2016: 60 pages; 10244001.
24.
Tracking Control Enabling Retrieval of Oceangoing Autonomous Surface Vehicles
by Schmidt, Robert, M.S.  University of Louisiana at Lafayette. 2016: 108 pages; 10163345.
25.
Algorithm Development for Real-time Infrastructure Damage Detection and Analysis
by Roy, Tonmoy, M.S.M.E.  Purdue University. 2017: 94 pages; 10267367.
26.
Air-sea carbon dioxide exchange in the Southern Ocean and Antarctic Sea ice zone
by Butterworth, Brian J., Ph.D.  State University of New York at Albany. 2016: 153 pages; 10149297.
28.
Upper-ocean variability in Drake Passage and the Weddell Sea: Measuring the oceanic response to air-sea and ice-ocean interactions
by Stephenson, Gordon Ronald, Jr., Ph.D.  University of California, San Diego. 2012: 136 pages; 3544197.
29.
An adaptable, low cost test-bed for unmanned vehicle systems research
by Goppert, James M., M.S.A.A.  Purdue University. 2011: 180 pages; 1501216.
30.
A Model-Based Framework for Predicting Autonomous Unmanned Ground Vehicle System Performance
by Young, Stuart Harry, Ph.D.  The George Washington University. 2016: 135 pages; 10124164.
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