English

Pushing the Envelope: From Discrete to Continuous Movements in Multi-Agent Path Finding via Lazy Encodings

Artificial Intelligence 2020-04-29 v1

Abstract

Multi-agent path finding in continuous space and time with geometric agents MAPFR^\mathcal{R} is addressed in this paper. The task is to navigate agents that move smoothly between predefined positions to their individual goals so that they do not collide. We introduce a novel solving approach for obtaining makespan optimal solutions called SMT-CBSR^\mathcal{R} based on {\em satisfiability modulo theories} (SMT). The new algorithm combines collision resolution known from conflict-based search (CBS) with previous generation of incomplete SAT encodings on top of a novel scheme for selecting decision variables in a potentially uncountable search space. We experimentally compare SMT-CBSR^\mathcal{R} and previous CCBS algorithm for MAPFR^\mathcal{R}.

Keywords

Cite

@article{arxiv.2004.13477,
  title  = {Pushing the Envelope: From Discrete to Continuous Movements in Multi-Agent Path Finding via Lazy Encodings},
  author = {Pavel Surynek},
  journal= {arXiv preprint arXiv:2004.13477},
  year   = {2020}
}

Comments

arXiv admin note: text overlap with arXiv:1903.09820