Ariel Felner

Senior Academic

Disjoint splitting for multi-agent path finding with conflict-based search

Jiaoyang Li, Daniel Harabor, Peter J. Stuckey, Ariel Felner, Hang Ma, Sven Koenig

Multi-Agent Path Finding (MAPF) is the planning problem of finding collision-free paths for a team of agents. We focus on Conflict-Based Search (CBS), a two-level tree-search state-of-the-art MAPF algorithm. The standard splitting strategy used by CBS is not disjoint, i.e., when it splits a problem into two subproblems, some solutions are shared by both subproblems, which can create duplication of search effort. In this paper, we demonstrate how to improve CBS with disjoint splitting and how to modify the low-level search of CBS to take maximal advantage of it. Experiments show that disjoint splitting increases the success rates and speeds of CBS and its variants by up to 2 orders of magnitude.

Publication language English
Pages 279-283
Publication status Published - 01.01.2019

ASJC Scopus subject areas

Artificial Intelligence
Computer Science Applications
Information Systems and Management
Access to Document
10.1609/icaps.v29i1.3487
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Link to publication in Scopus