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Biologically-inspired soft exosuit

机译:受生物启发的柔软防寒服

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摘要

In this paper, we present the design and evaluation of a novel soft cable-driven exosuit that can apply forces to the body to assist walking. Unlike traditional exoskeletons which contain rigid framing elements, the soft exosuit is worn like clothing, yet can generate moments at the ankle and hip with magnitudes of 18% and 30% of those naturally generated by the body during walking, respectively. Our design uses geared motors to pull on Bowden cables connected to the suit near the ankle. The suit has the advantages over a traditional exoskeleton in that the wearer's joints are unconstrained by external rigid structures, and the worn part of the suit is extremely light, which minimizes the suit's unintentional interference with the body's natural biomechanics. However, a soft suit presents challenges related to actuation force transfer and control, since the body is compliant and cannot support large pressures comfortably. We discuss the design of the suit and actuation system, including principles by which soft suits can transfer force to the body effectively and the biological inspiration for the design. For a soft exosuit, an important design parameter is the combined effective stiffness of the suit and its interface to the wearer. We characterize the exosuit's effective stiffness, and present preliminary results from it generating assistive torques to a subject during walking. We envision such an exosuit having broad applicability for assisting healthy individuals as well as those with muscle weakness.
机译:在本文中,我们介绍了一种新型软电缆驱动的防寒服的设计和评估,该防寒服可以向身体施加力以辅助行走。与传统的外骨骼不同,后者具有刚性的框架元素,柔软的外衣就像衣服一样穿着,但在脚踝和臀部会产生力矩,其幅度分别是步行过程中身体自然生成的力矩的18%和30%。我们的设计使用齿轮电动机拉动脚踝附近连接到西服的鲍登电缆。该服具有优于传统外骨骼的优点,即穿着者的关节不受外部刚性结构的约束,并且服的磨损部分非常轻,从而最大程度地减少了服对人体自然生物力学的无意干扰。然而,由于身体是顺从的并且不能舒适地支撑大压力,所以软套装提出了与致动力传递和控制有关的挑战。我们讨论了防护服和致动系统的设计,包括软防护服可以有效地将力传递到身体的原理以及设计的生物学灵感。对于软外衣而言,重要的设计参数是外衣及其与穿着者的接口的综合有效刚度。我们表征了外装服的有效刚度,并给出了它在行走过程中对受试者产生辅助扭矩的初步结果。我们设想这样的一种外衣具有广泛的适用性,可以帮助健康的个体以及肌肉无力的个体。

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