A Survey on Path Planning Problem of Rolling Contacts: Approaches, Applications and Future Challenges

Fuente: arXiv
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Hauptverfasser: Tafrishi, Seyed Amir, Svinin, Mikhail, Tahara, Kenji
Format: Preprint
Veröffentlicht: 2025
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author Tafrishi, Seyed Amir
Svinin, Mikhail
Tahara, Kenji
author_facet Tafrishi, Seyed Amir
Svinin, Mikhail
Tahara, Kenji
contents This paper explores an eclectic range of path-planning methodologies engineered for rolling surfaces. Our focus is on the kinematic intricacies of rolling contact systems, which are investigated through a motion planning lens. Beyond summarizing the approaches to single-contact rotational surfaces, we explore the challenging domain of spin-rolling multi-contact systems. Our work proposes solutions for the higher-dimensional problem of multiple rotating objects in contact. Venturing beyond kinematics, these methodologies find application across a spectrum of domains, including rolling robots, reconfigurable swarm robotics, micro/nano manipulation, and nonprehensile manipulations. Through meticulously examining established planning strategies, we unveil their practical implementations in various real-world scenarios, from intricate dexterous manipulation tasks to the nimble manoeuvring of rolling robots and even shape planning of multi-contact swarms of particles. This study introduces the persistent challenges and unexplored frontiers of robotics, intricately linked to both path planning and mechanism design. As we illuminate existing solutions, we also set the stage for future breakthroughs in this dynamic and rapidly evolving field by highlighting the critical importance of addressing rolling contact problems.
format Preprint
id arxiv_https___arxiv_org_abs_2501_04442
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Survey on Path Planning Problem of Rolling Contacts: Approaches, Applications and Future Challenges
Tafrishi, Seyed Amir
Svinin, Mikhail
Tahara, Kenji
Robotics
This paper explores an eclectic range of path-planning methodologies engineered for rolling surfaces. Our focus is on the kinematic intricacies of rolling contact systems, which are investigated through a motion planning lens. Beyond summarizing the approaches to single-contact rotational surfaces, we explore the challenging domain of spin-rolling multi-contact systems. Our work proposes solutions for the higher-dimensional problem of multiple rotating objects in contact. Venturing beyond kinematics, these methodologies find application across a spectrum of domains, including rolling robots, reconfigurable swarm robotics, micro/nano manipulation, and nonprehensile manipulations. Through meticulously examining established planning strategies, we unveil their practical implementations in various real-world scenarios, from intricate dexterous manipulation tasks to the nimble manoeuvring of rolling robots and even shape planning of multi-contact swarms of particles. This study introduces the persistent challenges and unexplored frontiers of robotics, intricately linked to both path planning and mechanism design. As we illuminate existing solutions, we also set the stage for future breakthroughs in this dynamic and rapidly evolving field by highlighting the critical importance of addressing rolling contact problems.
title A Survey on Path Planning Problem of Rolling Contacts: Approaches, Applications and Future Challenges
topic Robotics
url https://arxiv.org/abs/2501.04442