paper-with-me

홈 › Papers

TAPE: Tether-Aware Path Planning for Autonomous Exploration of Unknown 3D Cavities Using a Tangle-Compatible Tethered Aerial Robot

2026-06-29 · Louis Petit, Alexis Lussier Desbiens arxiv

This letter presents the first method for autonomous exploration of unknown cavities in three dimensions (3D) that focuses on minimizing the distance traveled and the length of tether unwound. Considering that the tether entanglements are little influenced by the global path, our approach employs a 2-level hierarchical architecture. The global frontier-based planning solves a Traveling Salesman Problem (TSP) to minimize the distance. The local planning attempts to minimize the path cost and the tether length using an adjustable decision function whose parameters play on the trade-off between these two values. The proposed method, TAPE, is evaluated through detailed simulation studies as well as field tests. On average, our method generates a 4.1% increase in distance traveled compared to the TSP solution without our local planner, with which the length of the tether remains below the maximum allowed value in 53% of the simulated cases against 100% with our method.

📄 PDF Abstract BibTeX arXiv:2606.30817

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Framework for Robust Motion Planning of Tethered Multi-Robot Systems in Marine Environments

2025-08-04 · Markus Buchholz, Ignacio Carlucho, Zebin Huang, Michele Grimaldi 외 arxiv

This paper introduces CoralGuide, a novel framework designed for path planning and trajectory optimization for tethered multi-robot systems. We focus on marine robotics, which commonly have tethered configurations of an …

Trajectory PlanningMotion Planning

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

2025-07-14 · Abdelhakim Amer, Mohit Mehindratta, Yury Brodskiy, Bilal Wehbe 외 arxiv

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 ve…

A Fast Method for Planning All Optimal Homotopic Configurations for Tethered Robots and Its Extended Applications

2025-07-16 · Jinyuan Liu, Minglei Fu, Ling Shi, Chenguang Yang 외 arxiv

Tethered robots play a pivotal role in specialized environments such as disaster response and underground exploration, where their stable power supply and reliable communication offer unparalleled advantages. However, th…

Motion Planning

Topological Motion Planning Diffusion: Generative Tangle-Free Path Planning for Tethered Robots in Obstacle-Rich Environments

2026-03-16 · Yifu Tian, Xinhang Xu, Thien-Minh Nguyen, Muqing Cao arxiv

In extreme environments such as underwater exploration and post-disaster rescue, tethered robots require continuous navigation while avoiding cable entanglement. Traditional planners struggle in these lifelong planning s…

Computational EfficiencyMotion Planning

Efficient Computation of a Continuous Topological Model of the Configuration Space of Tethered Mobile Robots

2025-12-08 · Gianpietro Battocletti, Dimitris Boskos, Bart De Schutter arxiv

Despite the attention that the problem of path planning for tethered robots has garnered in the past few decades, the approaches proposed to solve it typically rely on a discrete representation of the configuration space…