English

REACT: Real-time Entanglement-Aware Coverage Path Planning for Tethered Underwater Vehicles

Robotics 2026-02-09 v2 Systems and Control Systems and Control

Abstract

Inspection of underwater structures with tethered underwater vehicles is often hindered by the risk of tether entanglement. We propose REACT (real-time entanglement-aware coverage path planning for tethered underwater vehicles), a framework designed to overcome this limitation. REACT comprises a computationally efficient geometry-based tether model using the signed distance field (SDF) map for accurate, real-time simulation of taut tether configurations around arbitrary structures in 3D. This model enables an efficient online replanning strategy by enforcing a maximum tether length constraint, thereby actively preventing entanglement. By integrating REACT into a coverage path planning framework, we achieve safe and entanglement-free inspection paths, previously challenging due to tether constraints. The complete REACT framework's efficacy is validated in a pipe inspection scenario, demonstrating safe navigation and full coverage inspection. Simulation results show that REACT achieves complete coverage while maintaining tether constraints and completing the total mission 20% faster than conventional planners, despite a longer inspection time due to proactive avoidance of entanglement that eliminates extensive post-mission disentanglement. Real-world experiments confirm these benefits, where REACT completes the full mission, while the baseline planner fails due to physical tether entanglement.

Cite

@article{arxiv.2507.10204,
  title  = {REACT: Real-time Entanglement-Aware Coverage Path Planning for Tethered Underwater Vehicles},
  author = {Abdelhakim Amer and Mohit Mehindratta and Yury Brodskiy and Bilal Wehbe and Erdal Kayacan},
  journal= {arXiv preprint arXiv:2507.10204},
  year   = {2026}
}

Comments

Accepted for publication at International Conference on Robotics & Automation 2026

R2 v1 2026-07-01T03:59:43.689Z