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Importance of Series Elasticity in A Powered Transtibial Prosthesis with Ankle and Toe Joints

机译:用脚踝和脚趾关节动力进行动态旋转假肢的系列弹性重要性

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The authors have previously developed a powered transtibial prosthesis with ankle and toe joints to help lowerlimb amputees obtain more natural walking gaits. Inspired by the importance of series elasticity in increasing muscle work output and efficiency, series elasticity has been added into the actuators which are used to drive the ankle and toe joints. In this paper, we analyze the effects of series elasticity on the displacement, velocity, and energy consumption of the actuators. Dynamic models of the ankle and toe joints are built and simulations are performed. In these models, the imposed plantar pressures and objective joint angles are measured from locomotion experiments on healthy subjects. Simulation results show that series elasticity can reduce the displacement, maximal velocity, and energy consumption of the actuators. Walking experiments on an amputee subject wearing the prosthesis prototype are carried out. Experimental results validate the importance of series elasticity in reducing the energy consumption of the prosthesis.
机译:作者以前已经开发出一种动力的曲线假肢,脚踝和脚趾关节,以帮助下肢急需获得更多的自然行走Gaits。灵感灵感来自系列弹性在增加肌肉工作输出和效率时,串联弹性被添加到用于驱动脚踝和脚趾接头的致动器中。在本文中,我们分析了串联弹性对执行器的位移,速度和能量消耗的影响。构建脚踝和脚趾接头的动态模型,并进行仿真。在这些模型中,从健康受试者的运动实验中测量施加的跖射和目标接头角度。仿真结果表明,串联弹性可以降低致动器的位移,最大速度和能量消耗。进行佩戴假体原型的截肢主题的步行实验。实验结果验证了串联弹性在降低假体能耗方面的重要性。

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