Path Planning for an Unmanned Aerial Vehicle Considering Dynamic Geo-Fence in Urban Environment
Author:
Publisher
Springer Singapore
Link
http://link.springer.com/content/pdf/10.1007/978-981-13-8323-6_27
Reference12 articles.
1. Lin Y, Saripalli S (2017) Sampling-based path planning for UAV collision avoidance. IEEE Trans Intell Transp Syst 18:3179–3192
2. Mac TT, Copot C, Tran DT, De Keyser R (2016) Heuristic approaches in robot path planning: a survey. Robot Auton Syst 86:13–28
3. Marin-Plaza P, Hussein A, Martin D, Escalrea A (2018) Global and local path planning study in a ROS-based research platform for autonomous vehicles. J Adv Transp 2018
4. Chen Y, Peng H, Grizzle J (2018) Obstacle avoidance for low-speed autonomous vehicles with barrier function. IEEE Trans Control Syst Technol 26:194–206
5. Srikanthakumar S, Chen WH (2015) Worst-case analysis of moving obstacle avoidance systems for unmanned vehicles. Robotica 33:807–827
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