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Designing Bionic Path Robots to Minimize the Metabolic Cost of Human Movement

机译:设计仿生路径机器人,以最大限度地降低人类运动的代谢成本

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Despite great successes in wearable robotics, designing assistive devices that arc portable like clothes and could reduce the metabolic cost of human movement remains a substantial challenge. Inspired by the driving mechanism of human body, we proposed a class of bionic path (BP) robots in this paper. The BP robots could assist human limbs along arbitrary paths predesigned on the limb surface, and could be driven by various soft path actuators (the active, quasi-active or passive). Additionally, to minimize the metabolic cost of human movement, a human-in-the-loop optimization method for designing BP robots was also developed in this paper. As practical examples, 18 BP robots with 3 different types of path actuators along 6 different paths were designed to help people reduce their metabolic cost during walking. Each of the 18 robots combined with the human body separately to form a coupled dynamic system. The metabolic power, muscle excitations and optimal control profiles for these coupled systems were analyzed using the simulation-based method. Simulation results showed that, 13 of these 18 BP robots decreased the whole-body metabolic energy consumption, and the maximum reduction was up to 55% relative to the unassisted scenarios.
机译:尽管在可穿戴式机器人很大的成功,在设计弧便携式喜欢的衣服,并可能降低人体运动的代谢消耗辅助设备仍然是一个重大的挑战。人体的驱动机制的启发,我们在本文中提出的一类仿生路径(BP)的机器人。的BP机器人可以帮助人体四肢沿着预先设计肢体表面上任意路径,并且可以通过各种软路径的致动器驱动(有源,准主动或被动)。此外,尽量减少运动人体的代谢成本,设计BP机器人一人在半实物优化方法也被开发了本文。作为实际的例子,18个3种不同类型沿6条不同路径的路径驱动器的BP机器人的目的是帮助人们在行走过程中减少其代谢成本。每个机器人18与人体联合分开以形成一个耦合动力系统。使用基于仿真的方法的代谢力,肌肉激励和最佳控制简档这些耦合的系统进行分析。仿真结果表明,在这些18个BP机器人13降低全身代谢的能量消耗,和最大降低达相对于非辅助场景55%。

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