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Design of an Ankle Exoskeleton That Recycles Energy to Assist Propulsion During Human Walking

外骨骼 离合器 扭矩 推进 地面反作用力 脚踝 机制(生物学) 模拟 计算机科学 鞋跟 步态 工程类 汽车工程 物理医学与康复 运动学 结构工程 物理 医学 病理 热力学 航空航天工程 量子力学 经典力学
作者
Cunjin Wang,Lei Dai,Donghua Shen,Jiyuan Wu,Xingsong Wang,Mengqian Tian,Yunde Shi,Chun Su
出处
期刊:IEEE Transactions on Biomedical Engineering [Institute of Electrical and Electronics Engineers]
卷期号:69 (3): 1212-1224 被引量:11
标识
DOI:10.1109/tbme.2021.3120716
摘要

Active exoskeletons can handle different walking conditions, but require bulky components (e.g., motors) that need a significant source of power to do so. Purely passive exoskeletons are lightweight and energy-neutral, containing energy-recycling mechanisms that capture energy loss during negative power phases and return it as walking assistance. However, they are usually designed for stereotyped gaits (e.g., walking at fixed speed) and thus show poor adaptivity for variable conditions. This study is aimed to overcome these issues.A quasi-passive ankle exoskeleton is designed to integrate the merits of both active and passive exoskeletons, which captures the heel-strike energy loss and recycles it into propulsion. A novel, lightweight, energy-saving clutch and a heel-strike energy-storage mechanism are developed. They are coupled by a series spring that assists user's calf muscles. Six healthy subjects walked with the device on level ground and inclined surfaces to validate its functionality.Level ground studies indicate that the energy-storage mechanism enhances the assistance by increasing the output torque of the exoskeleton. Reductions in metabolic cost (6.4 ± 1.3%, p < 0.05) were observed. During uphill walking, the assistance torque decreased compared with that on level ground, but it still reduced overall metabolic cost compared with baseline walking. During downhill walking, the assistance torque increased, but metabolic cost also slightly increased.These results demonstrate the functionality of the prototype on level ground and its limitations on inclined surfaces.The proposed device highlights the possibility of widening the potential applications of exoskeletons.
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