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Development of a Bendable Outsole Biaxial Ground Reaction Force Measurement System

机译:弯曲外底双轴接地反作用力测量系统的研制

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Wearable ground reaction force (GRF) measurement systems make it possible to measure the GRF in any environment, unlike a commercial force plate. When performing kinetic analysis with the GRF, measurement of multiaxial GRF is important for evaluating forward and lateral motion during natural gait. In this paper, we propose a bendable GRF measurement system that can measure biaxial (vertical and anterior-posterior) GRF without interrupting the natural gait. Eight custom small biaxial force sensors based on an optical sensing mechanism were installed in the proposed system. The interference between two axes on the custom sensor was minimized by the independent application of a cantilever structure for the two axes, and the hysteresis and repeatability of the custom sensor were investigated. After developing the system by the installation of force sensors, we found that the degree of flexibility of the developed system was comparable to that of regular shoes by investigating the forefoot bending stiffness. Finally, we compared vertical GRF (vGRF) and anterior-posterior GRF (apGRF) measured from the developed system and force plate at the same time when the six subjects walked, ran, and jumped on the force plate to evaluate the performance of the GRF measurement system.
机译:与商业力板不同,可穿戴地面反作用力(GRF)测量系统使得可以测量任何环境中的GRF。当使用GRF进行动力学分析时,多轴GR的测量对于在自然步态期间评估前向和横向运动是重要的。在本文中,我们提出了一种可弯曲的GRF测量系统,可以在不中断自然步态的情况下测量双轴(垂直和前后)GRF。基于光学传感机构的八种定制小型双轴力传感器安装在所提出的系统中。通过独立施加两个轴的悬臂结构的独立施加来最小化定制传感器上的两个轴之间的干扰,并且研究了定制传感器的滞后和可重复性。在通过安装力传感器开发系统之后,我们发现,通过研究前掌弯曲刚度,开发系统的灵活性与常规鞋的灵活性相当。最后,我们比较了从发达的系统和前后的前后GRF(APGRF)与发达的系统和力板相比同时在六个受试者走路,跑步,跳上力板上,以评估GRF的性能测量系统。

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