外骨骼
运动学
肩关节
机制(生物学)
补偿(心理学)
模拟
矢状面
计算机科学
物理医学与康复
生物力学
接头(建筑物)
联轴节(管道)
动力外骨骼
旋转(数学)
瞬时旋转中心
运动(音乐)
肩胛骨
工程类
触觉技术
肌电图
控制理论(社会学)
运动链
职位(财务)
作者
Lianzheng Niu,Sheng Guo,Xin-Hua Yang,Haibo Qu,Majun Song,Xiangyang Wang
出处
期刊:Robotica
[Cambridge University Press]
日期:2025-11-14
卷期号:: 1-17
标识
DOI:10.1017/s0263574725102828
摘要
Abstract Most exoskeletons are designed with the shoulder joint’s instantaneous center of rotation (ICR) in mind as a fixed joint, often also known as the center of the shoulder joint. In fact, shoulder ICR changes during shoulder abduction–adduction and flexion–extension. Abduction–adduction causes the ICR to move in the frontal plane, which is caused by the joint movement of the shoulder joint, including depressed elevation and horizontal translation, while the flexion–extension movement of the sagittal plane produces the shoulder extension movement. If the change in shoulder ICoR movements is not compensated for in the exoskeleton design, they can create discomfort and pain for the robot’s wearer. Although conventional exoskeletons typically treat the shoulder joint as a three degree of freedom spherical joint, this study incorporates a more sophisticated understanding of shoulder kinematics. The developed scapulohumeral rhythm compensation mechanism successfully compensates for shoulder joint motion, with simulation results confirming kinematics that closely match ergonomic shoulder movement patterns. First, the complex kinematics of the shoulder joint are analyzed. To meet the demand for mismatch compensation, a shoulder exoskeleton based on a winding mechanism is designed. A mismatch compensation model is established, and theoretical analysis and simulation verify that the designed shoulder exoskeleton has a mismatch compensation function. While solving the mismatch problem, the human–machine coupling model is established through OpenSim software. The simulation results show that the designed exoskeleton has a good assisting effect from the perspective of muscle force generation and shoulder torque.
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