Development of a Collaborative Robotic Arm-based Bimanual Haptic Display

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Lee, Joong-Ku, Kim, Donghyeon, Park, Seong-Su, Lee, Jiye, Ryu, Jee-Hwan
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866915015255130112
author Lee, Joong-Ku
Kim, Donghyeon
Park, Seong-Su
Lee, Jiye
Ryu, Jee-Hwan
author_facet Lee, Joong-Ku
Kim, Donghyeon
Park, Seong-Su
Lee, Jiye
Ryu, Jee-Hwan
contents This paper presents a bimanual haptic display based on collaborative robot arms. We address the limitations of existing robot arm-based haptic displays by optimizing the setup configuration and implementing inertia/friction compensation techniques. The optimized setup configuration maximizes workspace coverage, dexterity, and haptic feedback capability while ensuring collision safety. Inertia/friction compensation significantly improve transparency and reduce user fatigue, leading to a more seamless and transparent interaction. The effectiveness of our system is demonstrated in various applications, including bimanual bilateral teleoperation in both real and simulated environments. This research contributes to the advancement of haptic technology by presenting a practical and effective solution for creating high-performance bimanual haptic displays using collaborative robot arms.
format Preprint
id arxiv_https___arxiv_org_abs_2411_07402
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Development of a Collaborative Robotic Arm-based Bimanual Haptic Display
Lee, Joong-Ku
Kim, Donghyeon
Park, Seong-Su
Lee, Jiye
Ryu, Jee-Hwan
Robotics
Human-Computer Interaction
This paper presents a bimanual haptic display based on collaborative robot arms. We address the limitations of existing robot arm-based haptic displays by optimizing the setup configuration and implementing inertia/friction compensation techniques. The optimized setup configuration maximizes workspace coverage, dexterity, and haptic feedback capability while ensuring collision safety. Inertia/friction compensation significantly improve transparency and reduce user fatigue, leading to a more seamless and transparent interaction. The effectiveness of our system is demonstrated in various applications, including bimanual bilateral teleoperation in both real and simulated environments. This research contributes to the advancement of haptic technology by presenting a practical and effective solution for creating high-performance bimanual haptic displays using collaborative robot arms.
title Development of a Collaborative Robotic Arm-based Bimanual Haptic Display
topic Robotics
Human-Computer Interaction
url https://arxiv.org/abs/2411.07402