arXiv:2603.28542cs.RO2026-03被引 4

低成本触觉手套提升机器人灵巧操作的精准度与感知能力

Feel Robot Feels: Tactile Feedback Array Glove for Dexterous Manipulation

  • 采用磁感应非接触设计,实现21自由度关节实时追踪,误差低于1度
  • 每指配备32执行器阵列,2平方厘米模块实现高分辨率触觉反馈
  • 显著提升复杂任务成功率,适合机器人示范数据采集与远程操控

遥操作是获取高质量、物理一致机器人操作示范的关键方法。然而,灵巧操作的遥操作仍受限于:(i) 手-机运动映射不准确,限制操作精细度;(ii) 触觉反馈不足,迫使依赖视觉交互,难以感知接触几何与力变化。为此,我们提出TAG系统,一种低成本手套,集成高精度手部运动捕捉与高分辨率触觉反馈,实现触觉闭环的灵巧遥操作。运动捕捉采用非接触磁传感设计,实现21自由度无漂移、抗电磁干扰的关节跟踪,关节角度估计误差低于1度。为恢复触觉感知,每个手指配备32执行器触觉阵列,集成于紧凑的2平方厘米模块内,使操作者可通过空间激活模式直接感知机器人末端的物理交互。通过真实场景遥操作实验与用户研究,验证了TAG能可靠实现接触几何与动态力的实时感知,提升高接触密度任务的成功率,并增强基于学习的操纵示范数据的可靠性。

原文摘要 · Abstract (English)

Teleoperation is a key approach for collecting high-quality, physically consistent demonstrations for robotic manipulation. However, teleoperation for dexterous manipulation remains constrained by: (i) inaccurate hand-robot motion mapping, which limits teleoperated dexterity, and (ii) limited tactile feedback that forces vision-dominated interaction and hinders perception of contact geometry and force variation. To address these challenges, we present TAG, a low-cost glove system that integrates precise hand motion capture with high-resolution tactile feedback, enabling effective tactile-in-the-loop dexterous teleoperation. For motion capture, TAG employs a non-contact magnetic sensing design that provides drift-free, electromagnetically robust 21-DoF joint tracking with joint angle estimation errors below 1 degree. Meanwhile, to restore tactile sensation, TAG equips each finger with a 32-actuator tactile array within a compact 2 cm^2 module, allowing operators to directly feel physical interactions at the robot end-effector through spatial activation patterns. Through real-world teleoperation experiments and user studies, we show that TAG enables reliable real-time perception of contact geometry and dynamic force, improves success rates in contact-rich teleoperation tasks, and increases the reliability of demonstration data collection for learning-based manipulation.

遥操作触觉反馈灵巧操作手套系统

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