arXiv:2509.26236cs.RO2025-09中稿 · IEEE Humanoids 202…被引 7

开源低成本机械手ISyHand通过可动掌骨设计提升灵巧操作能力。

ISyHand: A Dexterous Multi-finger Robot Hand with an Articulated Palm

  • 采用现成电机与3D打印件,四小时内可组装完成。
  • 仿真训练中初期表现优于两款同类手,真实世界也能完成翻转任务。
  • 适合机器人研究者、开源硬件开发者快速搭建灵巧操作平台。

人形机器人与定制化制造的快速发展使灵巧操作成为现代机器人学的核心挑战。过去十年中,虽已有多个昂贵的灵巧手问世,但伺服电机与3D打印技术的进步推动了低成本开源手的爆发式增长。多数手具有人类形态以适配标准工具,但提升灵巧性常牺牲拟人化特征。本文提出开源的ISyHand(读作easy-hand),一款高灵巧性、低成本、易制造、关节驱动的多指机器人手。其采用市售Dynamixel电机、紧固件与3D打印部件,总材料成本约1300美元,四小时内可完成组装。独特的可动掌骨设计在仅小幅牺牲拟人化的前提下显著提升整体灵巧性。为验证该设计优势,我们在仿真中使用强化学习训练手完成经典翻转任务——立方体重定向。系统性实验表明:模拟中的ISyHand在早期训练阶段性能优于两款可比手;三者在策略收敛后表现相当;且其可动掌骨版本显著优于同设计的固定掌骨版本。此外,我们将训练好的策略部署于实物手,成功实现真实世界的灵巧操作。

原文摘要 · Abstract (English)

The rapid increase in the development of humanoid robots and customized manufacturing solutions has brought dexterous manipulation to the forefront of modern robotics. Over the past decade, several expensive dexterous hands have come to market, but advances in hardware design, particularly in servo motors and 3D printing, have recently facilitated an explosion of cheaper open-source hands. Most hands are anthropomorphic to allow use of standard human tools, and attempts to increase dexterity often sacrifice anthropomorphism. We introduce the open-source ISyHand (pronounced easy-hand), a highly dexterous, low-cost, easy-to-manufacture, on-joint servo-driven robot hand. Our hand uses off-the-shelf Dynamixel motors, fasteners, and 3D-printed parts, can be assembled within four hours, and has a total material cost of about 1,300 USD. The ISyHands's unique articulated-palm design increases overall dexterity with only a modest sacrifice in anthropomorphism. To demonstrate the utility of the articulated palm, we use reinforcement learning in simulation to train the hand to perform a classical in-hand manipulation task: cube reorientation. Our novel, systematic experiments show that the simulated ISyHand outperforms the two most comparable hands in early training phases, that all three perform similarly well after policy convergence, and that the ISyHand significantly outperforms a fixed-palm version of its own design. Additionally, we deploy a policy trained on cube reorientation on the real hand, demonstrating its ability to perform real-world dexterous manipulation.

机器人手灵巧操作开源硬件强化学习

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