arXiv:2608.07075cs.RO2026-08

用微型传感器实现机器人触觉实时定位,毫秒级响应

Detection and Ranging of Transient Extrinsic Contacts Based on 6D Dynamic Tactile Sensing

论文配图:Detection and Ranging of Transient Extrinsic Contacts Based on 6D Dynamic Tactile Sensing
图 1 · 摘自论文原文
  • 用6维惯性传感器捕捉指尖微秒级形变,数据量仅84KB/s
  • 融合姿态信息后180ms内实现毫米级接触定位,平均误差7mm
  • 适合精密装配、手术辅助等需高灵敏触觉的场景

精细操作常涉及抓取物与环境间的瞬时微弱碰撞。人类凭借优异触觉可自然感知,而机器人系统常因分辨率不足导致动作笨拙甚至任务失败。本文提出一种瞬时外部接触检测与测距方法(TECDAR),通过在夹爪末端集成单个2.5×3 mm的6D惯性测量单元,以7 kHz采样率捕捉亚毫秒级指尖形变,数据流仅84 KB/s。高带宽与紧凑数据使系统能快速检测并定位抓取物与周围环境的接触。具体地,通过扩展卡尔曼滤波融合触觉数据与机器人位姿,实现180毫秒内达到毫米级定位精度。实验表明,在线接触与点接触任务中平均定位精度约7 mm。该近实时定位能力使机器人可在毫秒级修正轨迹,仅凭触觉探索与建图即可实现精准工具操作,并增强对复杂环境的感知。该技术有望推动精密装配、医疗辅助及触觉主导环境下的自主探索等领域发展。

原文摘要 · Abstract (English)

Delicate manipulation often involves transient and subtle collisions between a grasped object and the environment. While the human hand localizes these contacts effortlessly thanks to superior tactile sensitivity, robotic systems often lack the requisite resolution to acquire the information necessary for motion planning, resulting in clumsy manipulation or even task failure. Here, we propose transient extrinsic contact detection and ranging (TECDAR), a simple yet fast and efficient method for detecting and ranging extrinsic contact of grasped objects. Our design of gripper tips employs dynamic tactile sensing leveraging a single 2.5$\times$3 mm 6D inertial measurement unit. The sensor captures sub-millisecond tip deformations at a 7 kHz sampling rate, but operating on a data stream of only 84 KB/s. High bandwidth and compact data size enable the system to rapidly detect and localize contact between grasped objects and their surroundings. Specifically, fusing tactile data with robot pose via an extended Kalman filter enables fast and precise localization of extrinsic contact, reaching millimeter-level accuracy within 180 ms. Experimental results demonstrate that the system achieves an average localization accuracy of approximately 7\,mm in both line-contact and point-contact localization tasks. Furthermore, this near-instantaneous localization enables the robot to rectify its trajectory on a millisecond scale, facilitating precise tool manipulation and enhanced perception of complex environments purely through tactile exploration and mapping. We envision such techniques advancing the future of robotics across domains requiring delicate manipulation, including precision assembly, surgical assistance, and autonomous exploration in touch-dominant environments. Project page: humitlab.github.io/TECDAR/

触觉传感机器人操作实时定位精密控制

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