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1.
Robot assisted mobility for very young infants
by Lynch, Amy Katherine, Ph.D.  University of Delaware. 2009: 155 pages; 3360283.
2.
Robot configuration for subterranean modeling
by Omohundro, Zachary Meyer, Ph.D.  Carnegie Mellon University. 2009: 164 pages; 3386044.
3.
Market-based coordination and auditing mechanisms for self-interested multi-robot systems
by Ham, MyungJoo, Ph.D.  University of Illinois at Urbana-Champaign. 2009: 119 pages; 3395570.
4.
Holonomic Multi-Ball Locomotion and Adaptive Gaze Assisted Control for Mobile Remote Presence Systems
by Gebre, Biruk A., Ph.D.  Stevens Institute of Technology. 2018: 224 pages; 10928877.
5.
Robust Control of the Sit-to-stand Movement for Powered Lower Limb Orthoses
by Narvaez Aroche, Octavio, Ph.D.  University of California, Berkeley. 2019: 125 pages; 13886354.
6.
Development of a Control-Oriented Model for Autonomous Mobile Robots
by Meadows, Hunter, M.S.  Southern Illinois University at Edwardsville. 2018: 70 pages; 10979828.
7.
An Egocentric Computer Vision-Based Robotic Wheelchair
by Kutbi, Mohammed, Ph.D.  Stevens Institute of Technology. 2018: 131 pages; 10979494.
8.
Polar robot design for performance reliability
by Morlock, Allison, M.S.  Dartmouth College. 2013: 146 pages; 1550975.
9.
Command Language for Single-User, Multi-Robot Swarm Control
by Shultz, Abraham M., Sc.D.  University of Massachusetts Lowell. 2019: 327 pages; 13859845.
10.
Computational Methods for Dynamics and Mobility Analysis of Multiloop Mechanisms and Robotic Systems
by Wehage, Kristopher, Ph.D.  University of California, Davis. 2017: 277 pages; 10256858.
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Effects of perception range on mobile robot path efficiency
by Roman, Matthew J., Ph.D.  The University of Oklahoma. 2011: 133 pages; 3482361.
14.
GPS guided autonomous robot
by Paradkar, Aniket D., M.S.  California State University, Long Beach. 2016: 44 pages; 10116163.
15.
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.
16.
Kinematic analysis and control design of a retractable wheel mechanism using optimal control theory
by Safi Samghabadi, Pedram, M.Sc.  California State University, Long Beach. 2013: 53 pages; 1527340.
17.
Design and Control of Compliant Lower Legs for Insectoid Robots
by Qudsi, Yasmeen, M.S.  University of Louisiana at Lafayette. 2016: 97 pages; 10163346.
18.
Search Methods for Mobile Manipulator Performance Measurement
by Amoako-Frimpong, Samuel, M.S.  Marquette University. 2018: 100 pages; 10841175.
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Using Simplified Models and Limited-Horizon Planning to React to Time-Critical Problems
by Lurz, Joshua Paul, D.Sc.  The George Washington University. 2019: 145 pages; 13419796.
22.
Robot Self-Modeling
by Hart, Justin Wildrick, Ph.D.  Yale University. 2014: 216 pages; 3582284.
23.
Distributed control for robotic swarms using centroidal Voronoi tessellations
by Rounds, Shelley, M.S.  Utah State University. 2008: 144 pages; 1465781.
24.
Simulating soft bodied robots: Methods, benefits, and potential applications
by Saunders, Frank James, M.S.  Tufts University. 2009: 76 pages; 1463932.
25.
Soldier and robot interaction in combat environments
by Kolb, Michael, Ph.D.  The University of Oklahoma. 2012: 227 pages; 3524365.
26.
Workspace Analysis of a Linear Delta Robot: Calculating the Inscribed Radius
by Pauly, Michael Louis, M.S.  Rose Hulman Institute of Technology. 2014: 80 pages; 1569710.
27.
Power/Wheels: Mobility Technology Provision, Early Use, and the Experiences of Children and Families
by Feldner, Heather Ann, Ph.D.  University of Illinois at Chicago. 2016: 342 pages; 10300569.
28.
Smart water surface vehicle
by Iqbal, Javed, M.S.  California State University, Long Beach. 2016: 49 pages; 10116158.
29.
Smart Robotics Prosthesis Using Deep Learning and Musculoskeletal Modeling
by Chaudhari, Dipti K., M.S.  California State University, Long Beach. 2017: 56 pages; 10690581.
30.
Collaborative Motion for Mobile Platforms
by Biddlestone, Scott, Ph.D.  The Ohio State University. 2013: 149 pages; 3734570.
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