Simulation Analysis of A Cable-Driven Astronaut on-Orbit Physical Exercise Equipment

Lailu Li, Lixun Zhang, Bing Wang, Da Song
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Abstract

It has been proved by aerospace medicine that physical exercises are the most effective countermeasure to eliminate the negative influence brought by microgravity when astronauts carry out space exploration missions. A cable-driven astronaut on-orbit physical exercise equipment (CAPE) is proposed in this paper, and to verify its feasibility and performance: First, the cable-driven astronaut on-orbit physical exercise equipment was introduced. Second, the force analysis of the CAPE-assisted deep squat was conducted, and the cable tension distribution strategy was established. Third, the simulation study was carried out by utilizing Matlab. The results demonstrate that the deep squat conducted by the CAPE is smooth and steady, the cable tension distribution strategy is accurate, astronaut can realize deep squat during a space trip with the assistance of CAPE.
缆索驱动的航天员在轨体育锻炼设备仿真分析
航天医学已经证明,体育锻炼是消除宇航员在执行太空探索任务时微重力带来的负面影响的最有效的对策。本文提出了一种缆索驱动的航天员在轨体育锻炼设备(CAPE),并对其可行性和性能进行了验证:首先介绍了缆索驱动的航天员在轨体育锻炼设备。其次,进行了cape辅助深蹲受力分析,建立了索张力分布策略;第三,利用Matlab进行仿真研究。结果表明,在CAPE的辅助下,深蹲动作平稳、平稳,缆索张力分布策略准确,宇航员可以在CAPE的辅助下完成深蹲动作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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