@inproceedings{b602eeca401b418cb01d8023731df007,
title = "Decentralized velocity-aware motion planning for multi-agent coordination",
abstract = "Multi-Agent motion planning is a crucial topic with applications of search and rescue missions, transportation missions, etc. The concerns of motion planning focus on path planning and inter-Agent collision avoidance. Lyapunov-based models present great solutions for the problems. However it is usually empirical to set reasonable parameters for the models. Moreover, agents controlled by the models usually converge to destinations slowly. Heuristic planning algorithms are also mainstream approaches to guide agents without consideration of kinetics. This paper proposes decentralized velocity-Aware planning algorithm and collision avoidance algorithm to serve motion planning of multiple agents. The velocity-Aware algorithm generates paths with acceleration vectors that converge to the predefined destinations. The collision avoidance algorithm will be triggered to protect agents from collisions. The simulation results illustrate the efficiency of our algorithms. Furthermore, compared with the prioritized A∗ algorithm paired with Lyapunov-based low-level control laws, our approach could help agents take much shorter paths and much less time to move to destinations safely.",
keywords = "Collision avoidance, Motion planning, Velocity-Aware",
author = "Yujiao Hu and Xingshe Zhou and Yuan Yao",
note = "Publisher Copyright: {\textcopyright} 2019 IEEE.; 13th IEEE International Conference on Service-Oriented System Engineering, SOSE 2019, 10th International Workshop on Joint Cloud Computing, JCC 2019 and 2019 IEEE International Workshop on Cloud Computing in Robotic Systems, CCRS 2019 ; Conference date: 04-04-2019 Through 09-04-2019",
year = "2019",
month = may,
day = "3",
doi = "10.1109/SOSE.2019.00054",
language = "英语",
series = "Proceedings - 13th IEEE International Conference on Service-Oriented System Engineering, SOSE 2019, 10th International Workshop on Joint Cloud Computing, JCC 2019 and 2019 IEEE International Workshop on Cloud Computing in Robotic Systems, CCRS 2019",
publisher = "Institute of Electrical and Electronics Engineers Inc.",
pages = "319--324",
booktitle = "Proceedings - 13th IEEE International Conference on Service-Oriented System Engineering, SOSE 2019, 10th International Workshop on Joint Cloud Computing, JCC 2019 and 2019 IEEE International Workshop on Cloud Computing in Robotic Systems, CCRS 2019",
}