Heterogeneous Multi-Robot Graph Coverage with Proximity and Movement Constraints
Dolev Mutzari, Yonatan Aumann, Sarit Kraus
Abstract
Multi-Robot Coverage problems have been extensively studied in robotics, planning and multi-agent systems. In this work, we consider the coverage problem when there are constraints on the proximity (e.g., maximum distance between the agents, or a blue agent must be adjacent to a red agent) and the movement (e.g., terrain traversability and material load capacity) of the robots. Such constraints naturally arise in many real-world applications, e.g. in search-and-rescue and maintenance operations. Given such a setting, the goal is to compute a covering tour of the graph with a minimum number of steps, and that adheres to the proximity and movement constraints. For this problem, our contributions are four: (i) a formal formulation of the problem, (ii) an exact algorithm that is FPT in parameters ||F||, d and ω - the set of robot formations that encode the proximity constraints, the maximum nodes degree, and the tree-width of the graph, respectively, (iii) for the case that the graph is a tree: a PTAS approximation scheme, that given an ε produces a tour that is within a 1+ ε⋅error(||F||, d)) of the optimal one, and the computation runs in time poly(n) ⋅ h(1/ε, ||F||). (iv) for the case that the graph is a tree, with k=3 robots, and the constraint is that all agents are connected: a PTAS scheme with multiplicative approximation error of 1 + O(ε), independent of d.
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.
Cited by top-tier papers1
Ask how each one uses itRelated papers
- Exact Algorithms for Multiagent Path Finding with Communication Constraints on Tree-Like StructuresFoivos Fioravantes, Dusan Knop, Jan Matyás Kristan, Nikolaos Melissinos et al.AAAI 2025 · 2 citations
- Solving Multiagent Path Finding on Highly Centralized NetworksFoivos Fioravantes, Dusan Knop, Jan Matyás Kristan, Nikolaos Melissinos et al.AAAI 2025 · 5 citations
- On the Problem of Covering a 3-D TerrainEduard Eiben, Isuru S. Godage, Iyad Kanj, Ge XiaAAAI 2020 · 2 citations
- Fair Surveillance Assignment ProblemFangxiao Wang, Bo LiWWW 2024 · 5 citations
- Optimal Makespan in a Minute Timespan! A Scalable Multi-Robot Goal Assignment Algorithm for Minimizing Mission TimeAakash, Indranil SahaAAAI 2024 · 2 citations
