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A reduced-gravity simulator for physically simulating human walking in microgravity or reduced-gravity environment

机译:减少重力的模拟器,用于在微重力或减少重力的环境中物理模拟人的行走

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Astronauts must go through extensive training of their tasks in a simulated microgravity or reduced-gravity environment before they can perform the same tasks in space. Scientists and engineers also need simulated reduced-gravity facilities to study human performance and factors in space. This paper presents a novel design and prototype test of a multi-DOF reduced-gravity simulator which can be used for training astronauts and studying human factors in zero or partial gravity environment. Designed based on the passive static balancing technology, the simulator can passively compensate the gravity force applied to a human to any level from 0 to 100% at all the configurations within its workspace. Therefore, a person attached to the simulator can biomechanically feel like he/she were in a real reduced-gravity environment while doing a physical activity such as walking or jumping. A prototype of the simulator was developed to study the feasibility and dynamic performance of the system. The prototype study demonstrated the reduced-gravity simulation capability of the system. It also revealed some interesting findings which motivate further research in the future.
机译:在太空中执行相同任务之前,宇航员必须在模拟微重力或低重力环境中接受广泛的任务培训。科学家和工程师还需要模拟重力减轻的设施,以研究人类的性能和空间因素。本文提出了一种多自由度降重力模拟器的新颖设计和原型测试,该模拟器可用于训练宇航员并研究零重力或局部重力环境中的人为因素。基于无源静态平衡技术设计的模拟器可以在其工作空间内的所有配置上将施加到人类的重力被动补偿到0到100%之间的任意水平。因此,附着在模拟器上的人在进行诸如步行或跳跃之类的体育活动时,可以生物力学地感觉到他/她处于真实的重力降低的环境中。开发了模拟器的原型以研究系统的可行性和动态性能。原型研究证明了系统降低重力的能力。它还揭示了一些有趣的发现,这些发现激发了未来的进一步研究。

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