Time-Independent Planning for Multiple Moving Agents
Keisuke Okumura, Yasumasa Tamura, Xavier Défago
Abstract
Typical Multi-agent Path Finding (MAPF) solvers assume that agents move synchronously, thus neglecting the reality gap in timing assumptions, e.g., delays caused by an imperfect execution of asynchronous moves. So far, two policies enforce a robust execution of MAPF plans taken as input: either by forcing agents to synchronize or by executing plans while preserving temporal dependencies. This paper proposes an alternative approach, called time-independent planning, which is both online and distributed. We represent reality as a transition system that changes configurations according to atomic actions of agents, and use it to generate a time-independent schedule. Empirical results in a simulated environment with stochastic delays of agents' moves support the validity of our proposal.
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Cited by top-tier papers3
- Loosely Synchronized Rule-Based Planning for Multi-Agent Path Finding with Asynchronous ActionsShuai Zhou, Shizhe Zhao, Zhongqiang RenAAAI 2025 · 10 citations
- Concurrent Planning and Execution in Lifelong Multi-Agent Path Finding with Delay ProbabilitiesYue Zhang, Zhe Chen, Daniel Harabor, Pierre Le Bodic et al.AAAI 2025 · 3 citations
- Enhancing PIBT via Multi-Action OperationsEgor Yukhnevich, Anton AndreychukAAAI 2026
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