Chen Lingxing, Chen Chunjie, Ye Xin, Wang Zhuo, Liu Yao, Cao Wujing, Chen Shaocong, Wu Xinyu
Shenzhen Institute of Adanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.
Shenzhen College of Advanced Technology, University of Chinese Academy of Sciences, Shenzhen 518055, China.
Micromachines (Basel). 2022 Jan 21;13(2):157. doi: 10.3390/mi13020157.
The soft exosuit is an emerging robotics, which has been proven to considerably reduce the metabolic consumption of human walking and running. However, compared to walking, relatively few soft exosuits have been studied for running. Many soft exosuits used for running are worn on the back and with a heavy weight load, which may cause instability while running and potentially increase metabolic consumption. Therefore, reducing the weight of the whole soft exosuit system as much as possible and keeping the soft exosuit close to the center of gravity, may improve running stability and further reduce metabolic consumption. In this paper, a portable waist-loaded soft exosuit, the weight of which is almost entirely concentrated at the waist, is shown to assist hip flexion during running, and justifies choosing to assist hip flexion while running. As indicated by the experiments of motion flexibility, wearing the waist-loaded soft exosuit can assist in performing many common and complex motions. The metabolic consumption experiments proved that the portable waist-loaded soft exosuit reduces the metabolic consumption rate of wearers when jogging on the treadmill at 6 km per hour by 7.79% compared with locomotion without the exosuit. Additionally, at the running speed of 8 km per hour, using the waist-loaded soft exosuit can reduce metabolic consumption rate by 4.74%. Similarly, at the running speed of 10 km per hour, it also can be reduced by 6.12%. It is demonstrated that assisting hip flexion for running is also a reasonable method, and wearing the waist-loaded soft exosuit can keep human motion flexibility and reduce metabolic consumption.
软外骨骼是一种新兴的机器人技术,已被证明能显著降低人类行走和跑步时的代谢消耗。然而,与行走相比,针对跑步的软外骨骼研究相对较少。许多用于跑步的软外骨骼穿在背部且负重较大,这可能会导致跑步时不稳定,并可能增加代谢消耗。因此,尽可能减轻整个软外骨骼系统的重量,并使软外骨骼靠近重心,可能会提高跑步稳定性并进一步降低代谢消耗。在本文中,展示了一种便携式腰部加载软外骨骼,其重量几乎完全集中在腰部,在跑步时可辅助髋关节屈曲,并说明了选择在跑步时辅助髋关节屈曲的合理性。运动灵活性实验表明,穿着腰部加载软外骨骼可以辅助完成许多常见和复杂的动作。代谢消耗实验证明,与不穿外骨骼运动相比,便携式腰部加载软外骨骼在跑步机上以每小时6公里的速度慢跑时,可使穿着者的代谢消耗率降低7.79%。此外,在每小时8公里的跑步速度下,使用腰部加载软外骨骼可使代谢消耗率降低4.74%。同样,在每小时10公里的跑步速度下,也可降低6.12%。结果表明,辅助跑步时的髋关节屈曲也是一种合理的方法,并且穿着腰部加载软外骨骼可以保持人体运动灵活性并降低代谢消耗。