外骨骼人体工程学干预人机界面的研究现状

T. Schnieders, R. Stone
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引用次数: 8

摘要

这篇外骨骼设计的文献综述提供了外骨骼发展的简史,讨论了外骨骼在先天人机界面方面的当前研究,以及外骨骼在人体工程学干预方面的结合,并对未来需要的工作进行了回顾。辅助外骨骼的发展始于20世纪60年代,但旧的设计缺乏人为因素和人体工程学的设计,功率能量密度和功率重量比低。技术的进步促进了旨在提高人类表现和协助康复的广泛研究。该综述进行了全面而广泛的搜索,并提供了外骨骼设计中最先进技术的反映快照,因为它涉及外骨骼与人体工程学干预的结合。剩下的一些挑战包括提高外骨骼电源的能量密度,提高驱动装置的功率重量比,改进机械人机界面,以及处理用户之间的可变性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Current Work in the Human-Machine Interface for Ergonomic Intervention with Exoskeletons
This literature review of exoskeleton design provides a brief history of exoskeleton development, discusses current research of exoskeletons with respect to the innate human-machine interface, and the incorporation of exoskeletons for ergonomic intervention, and offers a review of needed future work. Development of assistive exoskeletons began in the 1960's but older designs lacked design for human factors and ergonomics and had low power energy density and power to weight ratios. Advancements in technology have spurred a broad spectrum of research aimed at enhancing human performance and assisting in rehabilitation. The review underwent a holistic and extensive search and provides a reflective snapshot of the state of the art in exoskeleton design as it pertains to the incorporation of exoskeletons for ergonomic intervention. Some of the remaining challenges include improving the energy density of exoskeleton power supplies, improving the power to weight ratio of actuation devices, improving the mechanical human-machine interface, and dealing with variability between users.
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