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1.
A Thermal Enclosure Prototype for a Suspended Inertial Sensor
by Afrough, Mohammad, M.S.  The University of Mississippi. 2017: 109 pages; 10683795.
2.
Dual-sensor approaches for real-time robust hand gesture recognition
by Liu, Kui, Ph.D.  The University of Texas at Dallas. 2015: 120 pages; 3708440.
3.
Short-Term Tracking of Orientation with Inertial Sensors
by Sedaghat, Golriz, M.S.  Portland State University. 2018: 88 pages; 10747107.
5.
An Application Programming Interface for Inertial Sensors Used in Physical Therapy and Injury Prevention
by Khibin, Volodymyr Yevgenovich, M.S.  University of California, Davis. 2011: 90 pages; 1507157.
6.
Multi-sensor Bayesian estimation interior positioning for stationary and mobile structures
by Tanju, Bereket R., Ph.D.  The George Washington University. 2010: 222 pages; 3433516.
8.
Resilience Analysis of Inertial Navigation Systems (INS) through an Enhanced INS Tool Kit
by Stavish, Kenneth V., D.Engr.  The George Washington University. 2018: 70 pages; 10743838.
9.
Latching microelectromechanical shock sensor systems: Design, modeling, and experiments
by Currano, Luke J., Ph.D.  University of Maryland, College Park. 2010: 226 pages; 3409868.
10.
Sensor Fusion to Detect Scale and Direction of Gravity in Monocular Slam Systems
by Tucker, Seth C., M.S.E.C.E.  Purdue University. 2017: 71 pages; 10639891.
12.
Autonomous Sun-Direction Estimation Using Partially Underdetermined Coarse Sun Sensor Configurations
by O'Keefe, Stephen A., Ph.D.  University of Colorado at Boulder. 2015: 175 pages; 3704787.
13.
Visual-Inertial SLAM Extrinsic Parameter Calibration Based on Bayesian Optimization
by Chen, Zhaozhong, M.S.  University of Colorado at Boulder. 2018: 51 pages; 10789260.
14.
Navigation algorithm for spacecraft lunar landing
by Paturi, Sasikanth Venkata Sai, M.S.  Mississippi State University. 2010: 124 pages; 1479262.
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16.
Human Mechatronics Considerations of Sensing and Actuation Systems for Rehabilitation Application
by Kanjanapas, Kan, Ph.D.  University of California, Berkeley. 2014: 96 pages; 3640496.
17.
Locating an Autonomous Car Using the Kalman Filter to Reduce Noise
by Hema Balaji, Nagarathna, M.S.  California State University, Long Beach. 2018: 62 pages; 10978429.
19.
Pedestrian Tracking Using Two IMUs Mounted on the Hips
by Omari, Tassniem, Ph.D.  The University of Mississippi. 2020: 326 pages; 28095418.
20.
Image Super-Resolution Enhancements for Airborne Sensors
by Woods, Matthew, Ph.D.  Northwestern University. 2016: 222 pages; 10193209.
21.
Kalman Filter approaches on crane swing
by Abis, Cagri, M.S.  Michigan Technological University. 2012: 85 pages; 1534026.
22.
Covariance Fusion of Multiple Positioning Systems for Minimizing Uncertainty through Innovations
by DeVon, David A., Ph.D.  The George Washington University. 2018: 235 pages; 10690000.
23.
Error Reduction Using Kalman Filters
by Sondh, Sidhartha, M.S.  California State University, Long Beach. 2018: 59 pages; 10784214.
24.
Extension of sensor battery life in wireless sensor networks using sink relocation
by Patel, Aashna, M.S.  California State University, Long Beach. 2016: 44 pages; 10118897.
25.
Angles-only navigation for autonomous orbital rendezvous
by Woffinden, David C., Ph.D.  Utah State University. 2008: 319 pages; 3316106.
27.
Interval analysis techniques for field mapping and geolocation
by Cui, Yan, Ph.D.  Purdue University. 2016: 143 pages; 10151584.
28.
Autonomous thermal soaring of a fixed wing UAV using temperature sensors
by Reddy, Deepak, M.S.  California State University, Long Beach. 2016: 93 pages; 10239609.
29.
Metric Semantic Inspection and Mapping for Concrete Infrastructure
by Yang, Liang, Ph.D.  The City College of New York. 2019: 166 pages; 27672401.
30.
Scalable Unsupervised Dense Objects Discovery, Detection, Tracking and Reconstruction
by Ma, Lu, Ph.D.  University of Colorado at Boulder. 2016: 160 pages; 10151087.
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