PokeRRT: Poking as a Skill and Failure Recovery Tactic for Planar Non-Prehensile Manipulation

Fuente: arXiv
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Hauptverfasser: Pasricha, Anuj, Tung, Yi-Shiuan, Hayes, Bradley, Roncone, Alessandro
Format: Preprint
Veröffentlicht: 2022
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author Pasricha, Anuj
Tung, Yi-Shiuan
Hayes, Bradley
Roncone, Alessandro
author_facet Pasricha, Anuj
Tung, Yi-Shiuan
Hayes, Bradley
Roncone, Alessandro
contents In this work, we introduce PokeRRT, a novel motion planning algorithm that demonstrates poking as an effective non-prehensile manipulation skill to enable fast manipulation of objects and increase the size of a robot's reachable workspace. We showcase poking as a failure recovery tactic used synergistically with pick-and-place for resiliency in cases where pick-and-place initially fails or is unachievable. Our experiments demonstrate the efficiency of the proposed framework in planning object trajectories using poking manipulation in uncluttered and cluttered environments. In addition to quantitatively and qualitatively demonstrating the adaptability of PokeRRT to different scenarios in both simulation and real-world settings, our results show the advantages of poking over pushing and grasping in terms of success rate and task time.
format Preprint
id arxiv_https___arxiv_org_abs_2201_13428
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle PokeRRT: Poking as a Skill and Failure Recovery Tactic for Planar Non-Prehensile Manipulation
Pasricha, Anuj
Tung, Yi-Shiuan
Hayes, Bradley
Roncone, Alessandro
Robotics
In this work, we introduce PokeRRT, a novel motion planning algorithm that demonstrates poking as an effective non-prehensile manipulation skill to enable fast manipulation of objects and increase the size of a robot's reachable workspace. We showcase poking as a failure recovery tactic used synergistically with pick-and-place for resiliency in cases where pick-and-place initially fails or is unachievable. Our experiments demonstrate the efficiency of the proposed framework in planning object trajectories using poking manipulation in uncluttered and cluttered environments. In addition to quantitatively and qualitatively demonstrating the adaptability of PokeRRT to different scenarios in both simulation and real-world settings, our results show the advantages of poking over pushing and grasping in terms of success rate and task time.
title PokeRRT: Poking as a Skill and Failure Recovery Tactic for Planar Non-Prehensile Manipulation
topic Robotics
url https://arxiv.org/abs/2201.13428