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下肢机器人外骨骼的现状与未来发展方向

State of the Art and Future Directions for Lower Limb Robotic Exoskeletons.

作者信息

Young Aaron J, Ferris Daniel P

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2017 Feb;25(2):171-182. doi: 10.1109/TNSRE.2016.2521160. Epub 2016 Jan 27.

Abstract

Research on robotic exoskeletons has rapidly expanded over the previous decade. Advances in robotic hardware and energy supplies have enabled viable prototypes for human testing. This review paper describes current lower limb robotic exoskeletons, with specific regard to common trends in the field. The preponderance of published literature lacks rigorous quantitative evaluations of exoskeleton performance, making it difficult to determine the disadvantages and drawbacks of many of the devices. We analyzed common approaches in exoskeleton design and the convergence, or lack thereof, with certain technologies. We focused on actuators, sensors, energy sources, materials, and control strategies. One of the largest hurdles to be overcome in exoskeleton research is the user interface and control. More intuitive and flexible user interfaces are needed to increase the success of robotic exoskeletons. In the last section, we discuss promising future solutions to the major hurdles in exoskeleton control. A number of emerging technologies could deliver substantial advantages to existing and future exoskeleton designs. We conclude with a listing of the advantages and disadvantages of the emerging technologies and discuss possible futures for the field.

摘要

在过去十年中,对机器人外骨骼的研究迅速扩展。机器人硬件和能源供应的进步已使可行的人体测试原型成为可能。这篇综述文章描述了当前的下肢机器人外骨骼,特别关注该领域的常见趋势。已发表文献中的大多数缺乏对外骨骼性能的严格定量评估,这使得难以确定许多设备的缺点和不足。我们分析了外骨骼设计中的常见方法以及与某些技术的融合情况(或缺乏融合的情况)。我们重点关注了致动器、传感器、能源、材料和控制策略。外骨骼研究中需要克服的最大障碍之一是用户界面和控制。需要更直观、灵活的用户界面来提高机器人外骨骼的成功率。在最后一部分,我们讨论了外骨骼控制中主要障碍的未来有前景的解决方案。一些新兴技术可以为现有和未来的外骨骼设计带来巨大优势。我们最后列出了新兴技术的优缺点,并讨论了该领域可能的未来发展。

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