English

ACE: A Cross-Platform Visual-Exoskeletons System for Low-Cost Dexterous Teleoperation

Robotics 2024-08-22 v1 Computer Vision and Pattern Recognition Machine Learning

Abstract

Learning from demonstrations has shown to be an effective approach to robotic manipulation, especially with the recently collected large-scale robot data with teleoperation systems. Building an efficient teleoperation system across diverse robot platforms has become more crucial than ever. However, there is a notable lack of cost-effective and user-friendly teleoperation systems for different end-effectors, e.g., anthropomorphic robot hands and grippers, that can operate across multiple platforms. To address this issue, we develop ACE, a cross-platform visual-exoskeleton system for low-cost dexterous teleoperation. Our system utilizes a hand-facing camera to capture 3D hand poses and an exoskeleton mounted on a portable base, enabling accurate real-time capture of both finger and wrist poses. Compared to previous systems, which often require hardware customization according to different robots, our single system can generalize to humanoid hands, arm-hands, arm-gripper, and quadruped-gripper systems with high-precision teleoperation. This enables imitation learning for complex manipulation tasks on diverse platforms.

Keywords

Cite

@article{arxiv.2408.11805,
  title  = {ACE: A Cross-Platform Visual-Exoskeletons System for Low-Cost Dexterous Teleoperation},
  author = {Shiqi Yang and Minghuan Liu and Yuzhe Qin and Runyu Ding and Jialong Li and Xuxin Cheng and Ruihan Yang and Sha Yi and Xiaolong Wang},
  journal= {arXiv preprint arXiv:2408.11805},
  year   = {2024}
}

Comments

Webpage: https://ace-teleop.github.io/

R2 v1 2026-06-28T18:19:48.269Z