UniBiDex: A Unified Teleoperation Framework for Robotic Bimanual Dexterous Manipulation

Fuente: arXiv
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Autori principali: Li, Zhongxuan, Guo, Zeliang, Hu, Jun, Navarro-Alarcon, David, Pan, Jia, Wu, Hongmin, Zhou, Peng
Natura: Preprint
Pubblicazione: 2026
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author Li, Zhongxuan
Guo, Zeliang
Hu, Jun
Navarro-Alarcon, David
Pan, Jia
Wu, Hongmin
Zhou, Peng
author_facet Li, Zhongxuan
Guo, Zeliang
Hu, Jun
Navarro-Alarcon, David
Pan, Jia
Wu, Hongmin
Zhou, Peng
contents We present UniBiDex a unified teleoperation framework for robotic bimanual dexterous manipulation that supports both VRbased and leaderfollower input modalities UniBiDex enables realtime contactrich dualarm teleoperation by integrating heterogeneous input devices into a shared control stack with consistent kinematic treatment and safety guarantees The framework employs nullspace control to optimize bimanual configurations ensuring smooth collisionfree and singularityaware motion across tasks We validate UniBiDex on a longhorizon kitchentidying task involving five sequential manipulation subtasks demonstrating higher task success rates smoother trajectories and improved robustness compared to strong baselines By releasing all hardware and software components as opensource we aim to lower the barrier to collecting largescale highquality human demonstration datasets and accelerate progress in robot learning.
format Preprint
id arxiv_https___arxiv_org_abs_2601_04629
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle UniBiDex: A Unified Teleoperation Framework for Robotic Bimanual Dexterous Manipulation
Li, Zhongxuan
Guo, Zeliang
Hu, Jun
Navarro-Alarcon, David
Pan, Jia
Wu, Hongmin
Zhou, Peng
Robotics
We present UniBiDex a unified teleoperation framework for robotic bimanual dexterous manipulation that supports both VRbased and leaderfollower input modalities UniBiDex enables realtime contactrich dualarm teleoperation by integrating heterogeneous input devices into a shared control stack with consistent kinematic treatment and safety guarantees The framework employs nullspace control to optimize bimanual configurations ensuring smooth collisionfree and singularityaware motion across tasks We validate UniBiDex on a longhorizon kitchentidying task involving five sequential manipulation subtasks demonstrating higher task success rates smoother trajectories and improved robustness compared to strong baselines By releasing all hardware and software components as opensource we aim to lower the barrier to collecting largescale highquality human demonstration datasets and accelerate progress in robot learning.
title UniBiDex: A Unified Teleoperation Framework for Robotic Bimanual Dexterous Manipulation
topic Robotics
url https://arxiv.org/abs/2601.04629