Stop-N-Go: Search-based Conflict Resolution for Motion Planning of Multiple Robotic Manipulators

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Han, Gidon, Park, Jeongwoo, Nam, Changjoo
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866912067250814976
author Han, Gidon
Park, Jeongwoo
Nam, Changjoo
author_facet Han, Gidon
Park, Jeongwoo
Nam, Changjoo
contents We address the motion planning problem for multiple robotic manipulators in packed environments where shared workspace can result in goal positions occupied or blocked by other robots unless those other robots move away to make the goal positions free. While planning in a coupled configuration space (C-space) is straightforward, it struggles to scale with the number of robots and often fails to find solutions. Decoupled planning is faster but frequently leads to conflicts between trajectories. We propose a conflict resolution approach that inserts pauses into individually planned trajectories using an A* search strategy to minimize the makespan--the total time until all robots complete their tasks. This method allows some robots to stop, enabling others to move without collisions, and maintains short distances in the C-space. It also effectively handles cases where goal positions are initially blocked by other robots. Experimental results show that our method successfully solves challenging instances where baseline methods fail to find feasible solutions.
format Preprint
id arxiv_https___arxiv_org_abs_2410_07606
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Stop-N-Go: Search-based Conflict Resolution for Motion Planning of Multiple Robotic Manipulators
Han, Gidon
Park, Jeongwoo
Nam, Changjoo
Robotics
We address the motion planning problem for multiple robotic manipulators in packed environments where shared workspace can result in goal positions occupied or blocked by other robots unless those other robots move away to make the goal positions free. While planning in a coupled configuration space (C-space) is straightforward, it struggles to scale with the number of robots and often fails to find solutions. Decoupled planning is faster but frequently leads to conflicts between trajectories. We propose a conflict resolution approach that inserts pauses into individually planned trajectories using an A* search strategy to minimize the makespan--the total time until all robots complete their tasks. This method allows some robots to stop, enabling others to move without collisions, and maintains short distances in the C-space. It also effectively handles cases where goal positions are initially blocked by other robots. Experimental results show that our method successfully solves challenging instances where baseline methods fail to find feasible solutions.
title Stop-N-Go: Search-based Conflict Resolution for Motion Planning of Multiple Robotic Manipulators
topic Robotics
url https://arxiv.org/abs/2410.07606