基于构型流形的以人为本的上肢康复外骨骼运动学优化设计

Shuo Pei;Jiajia Wang;Yunlong Yang;Anyang Dong;Bingqi Guo;Junlong Guo;Yufeng Yao
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引用次数: 0

摘要

肩部重复训练对脑卒中偏瘫患者的康复至关重要。本文研究了一种上肢康复外骨骼肩部结构的运动学结构优化,旨在覆盖人体肩部的运动范围,实现足够的灵巧性,获得紧凑的结构,并避免在工作空间内与使用者发生碰撞。基于构型流形的概念,将构型参数与关节角度参数融合,将参数优化问题转化为高维构型空间中的搜索问题。对人体与外骨骼之间的几何约束进行了参数化描述。将上肢运动映射到外骨骼的位形空间,计算关节的空间矢量,判断矢量是否满足约束条件。利用多目标粒子群优化算法对所建立的多目标优化问题进行计算,确定肩部构型参数。实验结果表明,功能康复外骨骼(FREE)具有广泛的ROM,良好的灵活性,可以帮助使用者完成大多数日常生活活动(ADLs)。本文提出的设计框架可以帮助设计师通过制定约束来确定最佳外骨骼配置。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Human-Centered Kinematics Design Optimization of Upper Limb Rehabilitation Exoskeleton Based on Configuration Manifold
Shoulder repetitive training is of paramount importance for rehabilitation of stroke patients with hemiplegia. This article investigated kinematic structural optimization of an upper limb rehabilitation exoskeleton's shoulder structure, aiming to cover the range of motion (ROM) of human shoulder, achieve sufficient dexterity, obtain a compact structure, and avoid collisions with the user within the workspace. Based on the concept of configuration manifold, configuration parameters and joint angle parameters were fused, and parameter optimization was transformed into a searching problem in high-dimensional configuration space. Geometric constraints between human and exoskeleton were described parametrically. Upper limb movements were mapped to the exoskeleton's configuration space to calculate spatial vectors of joints, and determine whether vectors satisfy constraints. The formulated multi-objective optimisation problem was computed by multi-objective particle swarm optimization (MOPSO) algorithm to determine the shoulder configuration parameters. Experimental results demonstrate that functional rehabilitation exoskeleton (FREE) exhibits a wide ROM, excellent dexterity, and can assist users in completing most activities of daily life (ADLs). The design framework proposed in this article can help designers determining optimal exoskeleton configurations through formulated constraints.
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CiteScore
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