arXiv:2601.07559cs.RO2026-01

轻量化假手通过电流反馈实现稳定抓取重物旋转

Stable In-hand Manipulation for a Lightweight Four-motor Prosthetic Hand

  • 用电机电流反馈估算物体宽度并动态调整手指位置
  • 对重达289克铝质棱柱成功率达80%以上,轻物100%成功
  • 适合需要稳定抓握和日常操作的假肢用户

电动假手需轻量化以减轻使用者负担,外观似人手以美观,并将电机置于内部以防损防尘。此外,手中操作对于完成日常任务至关重要,如抓取后旋转笔至书写姿态。此前我们开发了PLEXUS假手(311克),由四个电机驱动,可完成精密与侧向抓握间的转换。但其控制器需预设物体宽度,且仅限处理重量不超过34克的轻物。本研究通过引入电机电流反馈,结合优化的单轴拇指结构,实现物体宽度估计并动态调节食指位置,提升抓持稳定性。实验使用5-30毫米宽、圆柱与棱柱形物体验证,轻物成功率100%,重物(最大289克铝棱柱)成功率仍保持≥80%;若无食指协同,最重物体成功率降至40%。假手还成功完成拧瓶盖、执笔等日常任务。

原文摘要 · Abstract (English)

Electric prosthetic hands should be lightweight to decrease the burden on the user, shaped like human hands for cosmetic purposes, and designed with motors enclosed inside to protect them from damage and dirt. Additionally, in-hand manipulation is necessary to perform daily activities such as transitioning between different postures, particularly through rotational movements, such as reorienting a pen into a writing posture after picking it up from a desk. We previously developed PLEXUS hand (Precision-Lateral dEXteroUS manipulation hand), a lightweight (311 g) prosthetic hand driven by four motors. This prosthetic performed reorientation between precision and lateral grasps with various objects. However, its controller required predefined object widths and was limited to handling lightweight objects (of weight up to 34 g). This study addresses these limitations by employing motor current feedback. Combined with the hand's previously optimized single-axis thumb, this approach achieves more stable manipulation by estimating the object's width and adjusting the index finger position to maintain stable object holding during the reorientation. Experimental validation using primitive objects of various widths (5-30 mm) and shapes (cylinders and prisms) resulted in a 100% success rate with lightweight objects and maintained a high success rate (>=80) even with heavy aluminum prisms (of weight up to 289 g). By contrast, the performance without index finger coordination dropped to just 40% on the heaviest 289 g prism. The hand also successfully executed several daily tasks, including closing bottle caps and orienting a pen for writing.

假肢手抓取稳定电流反馈日常操作

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