Multi-Agent Path Finding with Prioritized Communication Learning
February 08, 2022 Β· Declared Dead Β· π IEEE International Conference on Robotics and Automation
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Authors
Wenhao Li, Hongjun Chen, Bo Jin, Wenzhe Tan, Hongyuan Zha, Xiangfeng Wang
arXiv ID
2202.03634
Category
cs.RO: Robotics
Cross-listed
cs.GT,
cs.LG,
cs.MA
Citations
52
Venue
IEEE International Conference on Robotics and Automation
Last Checked
5 months ago
Abstract
Multi-agent pathfinding (MAPF) has been widely used to solve large-scale real-world problems, e.g., automation warehouses. The learning-based, fully decentralized framework has been introduced to alleviate real-time problems and simultaneously pursue optimal planning policy. However, existing methods might generate significantly more vertex conflicts (or collisions), which lead to a low success rate or more makespan. In this paper, we propose a PrIoritized COmmunication learning method (PICO), which incorporates the \textit{implicit} planning priorities into the communication topology within the decentralized multi-agent reinforcement learning framework. Assembling with the classic coupled planners, the implicit priority learning module can be utilized to form the dynamic communication topology, which also builds an effective collision-avoiding mechanism. PICO performs significantly better in large-scale MAPF tasks in success rates and collision rates than state-of-the-art learning-based planners.
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