arXiv:2606.17418cs.RO2026-06被引 2

低成本16自由度机械手实现类人灵巧操作,可抓握33种日常物品

DexLink Hand: A Compact, Affordable, 16-DOF Linkage-Driven Hand with Human-Like Dexterity

论文配图:DexLink Hand: A Compact, Affordable, 16-DOF Linkage-Driven Hand with Human-Like Dexterity
图 1 · 摘自论文原文
  • 采用平面与空间联动机构结合,16个驱动器控制20个关节实现解耦运动
  • 仅重320克、成本低于400美元,能完成全部33种Feix抓握动作
  • 适合机器人灵巧操作、远程操控及人机交互场景,结构紧凑易集成

灵巧机器人手长期面临灵巧性、紧凑性和成本之间的权衡。高自由度设计通常需要复杂的驱动与传动系统,难以融入人尺寸结构。为此,本文提出一种紧凑、低成本的类人机械手,具备高灵巧性、结构集成性和类人功能。该手共含20个关节,由16个独立驱动器驱动,所有驱动、传感和传动部件均嵌入人手大小的结构中,原型总重仅320克,总成本低于400美元。通过混合机械架构融合平面与空间联动机制,实现解耦多向运动、仿生关节协同及高被动承重能力;拇指还包含仿生特征,支持类人再配置与对掌动作。实验表明,该手达到最大Kapandji评分,复现全部33种Feix抓握类型,并在多种日常物体与工具上实现稳定抓握与灵巧操作。结果验证了其作为人机环境中灵巧操作、远程操控与机器人学习的低成本、紧凑、高效平台的可行性。

原文摘要 · Abstract (English)

Dexterous robotic hands face a longstanding trade-off among dexterity, compactness, and affordability. Particularly, high-degree-of-freedom designs typically demand complex actuation and transmission, hindering integration into human-scale forms. To address these challenges, this work presents a compact, low-cost linkage-driven anthropomorphic hand that achieves high dexterity, structural integration, and human-hand-like functionality. The hand integrates 20 joints driven by 16 independent actuators, with all actuation, sensing, and transmission components compactly embedded within a human-hand-sized structure. The resulting prototype weighs only 320g at a total cost below USD 400. To meet these objectives, a hybrid mechanical architecture combining planar and spatial linkage mechanisms is proposed, enabling decoupled multidirectional motion, biomimetic joint synergies, and high passive load-bearing capability. The thumb further incorporates biomimetic features supporting human-like reconfiguration and opposition movements. Through the coordinated integration of these mechanisms and structural layout, the prototype achieves a highly integrated design with anthropomorphic dexterity. Experimental evaluations demonstrate that the hand achieves the maximum Kapandji score, reproduces all 33 Feix grasp types, and performs stable grasping and dexterous manipulation across a wide variety of daily objects and tools. These results validate the proposed hand as an affordable, compact, and mechanically efficient platform for dexterous manipulation, teleoperation, and robot learning in human-centered environments.

灵巧手机器人低成本类人操作

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