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Multi-Unmanned Aerial Vehicle Systems Control via Flexible Levels of Interaction: An Adaptable Operator-Automation Interface Concept Demonstration
Mapping Intimacies
◽
10.2514/6.2013-4803
◽
2013
◽
Cited By ~ 13
Author(s):
Mark Draper
◽
Christopher A. Miller
◽
J. Benton
◽
Gloria L. Calhoun
◽
Heath Ruff
◽
...
Keyword(s):
Unmanned Aerial Vehicle
◽
Vehicle Systems
◽
Aerial Vehicle
◽
Systems Control
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Cited By
References
Security, Safety and Privacy Issues of Unmanned Aerial Vehicle Systems
Communications in Computer and Information Science - Big Data and Security
◽
10.1007/978-981-15-7530-3_3
◽
2020
◽
pp. 28-39
Author(s):
Najla Al-nabhan
Keyword(s):
Unmanned Aerial Vehicle
◽
Vehicle Systems
◽
Aerial Vehicle
◽
Privacy Issues
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Miniaturized ultra‐wideband printed dipole array for electronic warfare applications in unmanned aerial vehicle systems
Microwave and Optical Technology Letters
◽
10.1002/mop.32506
◽
2020
◽
Vol 62
(11)
◽
pp. 3601-3610
Author(s):
A. N. Meena Kumari
◽
Suma Varughese
◽
P. Venkatesh Rao
Keyword(s):
Unmanned Aerial Vehicle
◽
Ultra Wideband
◽
Electronic Warfare
◽
Vehicle Systems
◽
Aerial Vehicle
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Deconfliction in High-Density Unmanned Aerial Vehicle Systems
Journal of Air Transportation
◽
10.2514/1.d0119
◽
2019
◽
Vol 27
(2)
◽
pp. 61-69
◽
Cited By ~ 3
Author(s):
Timothy B. Nysetvold
◽
John L. Salmon
Keyword(s):
Unmanned Aerial Vehicle
◽
High Density
◽
Vehicle Systems
◽
Aerial Vehicle
Download Full-text
Discrete-Time Adaptive Neural Tracking Control and Its Experiments for Quadrotor Unmanned Aerial Vehicle Systems
IEEE/ASME Transactions on Mechatronics
◽
10.1109/tmech.2021.3112470
◽
2021
◽
pp. 1-12
Author(s):
Xiuyu Zhang
◽
Yue Wang
◽
Guoqiang Zhu
◽
Xinkai Chen
◽
Chun-Yi Su
Keyword(s):
Unmanned Aerial Vehicle
◽
Discrete Time
◽
Tracking Control
◽
Vehicle Systems
◽
Aerial Vehicle
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Protect Your Sky: A Survey of Counter Unmanned Aerial Vehicle Systems
IEEE Access
◽
10.1109/access.2020.3023473
◽
2020
◽
Vol 8
◽
pp. 168671-168710
◽
Cited By ~ 1
Author(s):
Honggu Kang
◽
Jingon Joung
◽
Jinyoung Kim
◽
Joonhyuk Kang
◽
Yong Soo Cho
Keyword(s):
Unmanned Aerial Vehicle
◽
Vehicle Systems
◽
Aerial Vehicle
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Identifying and Exploiting Vulnerabilities in Civilian Unmanned Aerial Vehicle Systems and Evaluating and Countering Potential Threats Against the United States Airspace
Proceedings of the 2017 ACM SIGCSE Technical Symposium on Computer Science Education - SIGCSE '17
◽
10.1145/3017680.3022449
◽
2017
◽
Cited By ~ 4
Author(s):
Philip J. Costello
Keyword(s):
United States
◽
Unmanned Aerial Vehicle
◽
The United States
◽
Vehicle Systems
◽
Aerial Vehicle
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Unmanned Aerial Vehicle Systems for Remote Estimation of Flooded Areas Based on Complex Image Processing
Sensors
◽
10.3390/s17030446
◽
2017
◽
Vol 17
(3)
◽
pp. 446
◽
Cited By ~ 27
Author(s):
Dan Popescu
◽
Loretta Ichim
◽
Florin Stoican
Keyword(s):
Image Processing
◽
Unmanned Aerial Vehicle
◽
Complex Image
◽
Vehicle Systems
◽
Aerial Vehicle
◽
Remote Estimation
◽
Flooded Areas
Download Full-text
Formation Control of Multi Unmanned Aerial Vehicle Systems Based on DDS Middleware
IEEE Access
◽
10.1109/access.2020.2978008
◽
2020
◽
Vol 8
◽
pp. 44211-44218
Author(s):
Sami El-Ferik
◽
Basem Almadani
◽
Siddig Mustafa Elkhider
Keyword(s):
Unmanned Aerial Vehicle
◽
Formation Control
◽
Vehicle Systems
◽
Aerial Vehicle
Download Full-text
Adaptive Multi-Agent Unmanned Aerial Vehicle Systems with a Potential Field based Leader-Follower Formation Control Method
10.4271/2015-01-2457
◽
2015
◽
Author(s):
Jae Chung
◽
Yushing Cheung
Keyword(s):
Unmanned Aerial Vehicle
◽
Potential Field
◽
Formation Control
◽
Control Method
◽
Vehicle Systems
◽
Aerial Vehicle
◽
Multi Agent
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Improving Rangeland Monitoring and Assessment: Integrating Remote Sensing, GIS, and Unmanned Aerial Vehicle Systems
10.2172/978362
◽
2007
◽
Author(s):
Robert Paul Breckenridge
Keyword(s):
Remote Sensing
◽
Unmanned Aerial Vehicle
◽
Rangeland Monitoring
◽
Vehicle Systems
◽
Aerial Vehicle
Download Full-text
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