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Biomechanical Analysis of Squatting, Jumping and Striding Ditches with 30kg Payload for Design of Exoskeleton

机译:30KG有效载荷蹲下,跳跃和挖沟沟的生物力学分析

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The biomechanical analysis is the basis for the design and research of the power-assisted exoskeleton. In this paper, a dynamic model of human squatting and jumping was established. The biomechanical test platform was built which consisted of the Qualisys Motion Capture System, Visual3D Software and a 30kg payload. A healthy adult man attended this experiment, in which there were data of 18 movements collected with Okg and 30kg payload relatively under the squatting, jumping and striding ditches. The analyses based on the data, including angle, torque, and power, demonstrate that 1) during the squatting, the torque and power provided by the knee are the largest, torque and power of the ankle increased the most under 30kg payload and 2) during the jumping, the knee which provides the largest torque and power has the largest range of motion, the power of the ankle is also larger, and the ankle plays an important role in the take-off and landing buffer process and 3) during the striding ditches, the torque and power of the left ankle are the largest and the positive power increases greatly, and the torque and power of the right knee are smaller without load while increasing significantly under load and the negative power of the knee is larger under load, and the buffering effect of the knee is obvious. Therefore, in the case of squatting, jumping and striding ditches, exoskeleton design should pay more attention to knee and ankle joints. These results provide a theoretical basis for the design of the power-assisted exoskeleton.
机译:生物力学分析是助力外骨骼的设计和研究的基础。在本文中,人蹲和跳跃的动态模型建立。生物力学测试平台始建其中包括了Qualisys运动捕捉系统,软件的Visual3D和30公斤的有效载荷。一个健康的成年男子参加了这个实验,其中有相对下蹲位与OKG和30公斤有效载荷收集的18个运动的数据,跳跃,跨越的沟渠。该分析基于所述数据,包括角度,扭矩和功率,表明1)下蹲时,由所述膝提供的扭矩和功率是脚踝的最大,扭矩和功率增加了最下30公斤有效载荷和2)跳跃期间,它提供了最大的扭矩和功率具有运动的最大范围的膝关节,踝关节的功率也大,并且脚踝期间起着在起飞和着陆缓冲过程中起重要作用以及3)跨步沟渠,左脚踝的扭矩和功率是最大的和正功率大大增加,和右膝的扭矩和功率是无负载较小而负载下显著增加和膝部的负焦度是负载下大和膝关节的缓冲效果是明显的。因此,在下蹲,跳跃,跨越壕沟的情况下,外骨骼设计应该更加注重膝关节和踝关节。这些结果提供了助力外骨骼的设计提供理论依据。

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