arXiv · 2505.07779
Multi-Agent Path Finding via Finite-Horizon Hierarchical Factorization
Abstract
We present a novel algorithm for large-scale Multi-Agent Path Finding (MAPF) that enables fast, scalable planning in dynamic environments such as automated warehouses. Our approach introduces finite-horizon hierarchical factorization, a framework that plans one step at a time in a receding-horizon fashion. Robots first compute individual plans in parallel, and then dynamically group based on spatio-temporal conflicts and reachability. The framework accounts for conflict resolution, and for immediate execution and concurrent planning, significantly reducing response time compared to offline algorithms. Experimental results on benchmark maps demonstrate that our method achieves up to 60% reduction in time-to-first-action while consistently delivering high-quality solutions, outperforming state-of-the-art offline baselines across a range of problem sizes and planning horizons.
Explore related subjects
Keep this discovery
Jiarui Li, Alessandro Zanardi, Gioele Zardini. 2025-05-12. Multi-Agent Path Finding via Finite-Horizon Hierarchical Factorization. https://arxiv.org/abs/2505.07779
Cite the original work for its findings. Save a collection to share your selection of sources.