English

Robust Geospatial Coordination of Multi-Agent Communications Networks Under Attrition

Robotics 2026-04-02 v2 Multiagent Systems Systems and Control Systems and Control

Abstract

Coordinating emergency responses in extreme environments, such as wildfires, requires resilient and high-bandwidth communication backbones. While autonomous aerial swarms can establish ad-hoc networks to provide this connectivity, the high risk of individual node attrition in these settings often leads to network fragmentation and mission-critical downtime. To overcome this challenge, we introduce and formalize the problem of Robust Task Networking Under Attrition (RTNUA), which extends connectivity maintenance in multi-robot systems to explicitly address proactive redundancy and attrition recovery. We then introduce Physics-Informed Robust Employment of Multi-Agent Networks (Φ\PhiIREMAN), a topological algorithm leveraging physics-inspired potential fields to solve this problem. In our evaluations, Φ\PhiIREMAN consistently outperforms baselines, and is able to maintain greater than 99.9%99.9\% task uptime despite substantial attrition in simulations with up to 100 tasks and 500 drones, demonstrating both effectiveness and scalability.

Cite

@article{arxiv.2512.02079,
  title  = {Robust Geospatial Coordination of Multi-Agent Communications Networks Under Attrition},
  author = {Jonathan S. Kent and Eliana Stefani and Brian Plancher},
  journal= {arXiv preprint arXiv:2512.02079},
  year   = {2026}
}

Comments

8 pages, 4 figures, 4 tables, accepted to IEEE RA-L

R2 v1 2026-07-01T08:04:27.041Z