Exact Algorithms for Multiagent Path Finding with Communication Constraints on Tree-Like Structures
Foivos Fioravantes, Dusan Knop, Jan Matyás Kristan, Nikolaos Melissinos, Michal Opler
Abstract
Consider the scenario where multiple agents have to move in an optimal way through a network, each one towards their ending position, and while avoiding collisions. By optimal, we mean as fast as possible, which is evaluated by a measure known as the makespan of the proposed solution. This is the setting studied in the Multiagent Path Finding problem. In this work we additionally provide the agents with a way to communicate with each other. Due to size constraints, it is reasonable to assume that the range of the communication of each agent will be limited. What should be the trajectories of the agents to, additionally, maintain a backbone of communication? In this work we study this Multiagent Path Finding with Communication Constraint problem under the parameterized complexity framework.
Our main contribution is three exact algorithms that are efficient when considering particular structures for the input network. We provide such algorithms for the case when the communication range and the number of agents (the makespan resp.) is provided in the input and the network has a tree topology, or bounded maximum degree (has a tree-like topology, i.e., bounded treewidth resp.). We complement these results by showing that it is highly unlikely to construct efficient algorithms when considering the number of agents as part of the input, even if the makespan is 3 and the communication range is 1.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Your agent calls
Luneget_paper_fulltext
Free to start. No credit card required.
Terminal
Install the CLIlune papers fulltext 920df606-0041-4cd2-9fde-b782e16716a6Builds on2
Related papers
- Solving Multiagent Path Finding on Highly Centralized NetworksFoivos Fioravantes, Dusan Knop, Jan Matyás Kristan, Nikolaos Melissinos et al.AAAI 2025 · 5 citations
- Inapproximability of Optimal Multi-Agent Pathfinding ProblemsXing Tan, Alban GrastienAAAI 2025
- Heterogeneous Multi-Robot Graph Coverage with Proximity and Movement ConstraintsDolev Mutzari, Yonatan Aumann, Sarit KrausAAAI 2025
- Optimal Makespan in a Minute Timespan! A Scalable Multi-Robot Goal Assignment Algorithm for Minimizing Mission TimeAakash, Indranil SahaAAAI 2024 · 2 citations
- Parameterized Complexity of Envy-Free Resource Allocation in Social NetworksEduard Eiben, Robert Ganian, Thekla Hamm, Sebastian OrdyniakAAAI 2020 · 27 citations
