一种用于Freeman平台足部应力恢复的低成本传感系统

S. Boukhenous, M. Attari
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引用次数: 3

摘要

本文重点设计了一种低成本的传感系统,用于研究足部反应应力恢复。例如,在Freeman平台上进行脚踝康复治疗的测量。该系统基于传感元件的设计,并将其设置在柔性材料上作为脚的形状。传感器元件是基于霍尔效应器件耦合磁铁在一个典型的弹性聚合物材料。传感器安装在印刷电路板上,用硬聚合物层回收,以获得均匀的应变分布。每个传感元件的输出信号被传送到仪表放大器,用于调整信号的电平和设置。首先对聚合物材料的研究进行了校准,然后对安装的传感器元件进行了校准,以表明这种应力传感的可行性。标定完成后,将仪器绑定到Freeman平台上进行了实际环境下的动态测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A low cost sensing system for foot stress recovering on a Freeman platform
This paper highlights the design of a low cost sensing system for the study of foot reaction stress recovering. For instance, measurements are made on Freeman platform for ankle rehabilitation sessions. The system is based on the design of a sensing element and to set it onto a flexible material as a foot shape. The sensor element is based on a Hall Effect device coupled with a magnet in a typical elastic polymer material. The sensors are mounted on a printed circuit board and recovered with a hard polymer layer in order to obtain a uniform distribution of strains. The output signal of each sensing element is carried out to an instrumentation amplifier for adjusting the level of signals and settings. First calibration was performed for the study of the polymer material and then for the mounted sensor element in order to show the feasibility of such stress sensing. After calibration procedure, a dynamic measurement in real environment has been carried out with the instrument bonded onto a Freeman platform.
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