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Gait phase detection based on non-contact capacitive sensing: Preliminary results

机译:基于非接触电容传感的步态相检测:初步结果

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Gait phase detection is essential to the control of lower-limb exoskeletons. In this paper, we present a non-contact capacitive sensing strategy for gait phase detection to replace foot pressure sensors. The designed capacitance sensing system can record signals of human muscle contraction from the leg. The electrodes are non-contact with the skin, which are fixed on the particularly designed cuffs. To evaluate the performance of the capacitance sensing on gait phase detection, two experiments are conducted on healthy subjects. With selected features and sliding window classification method, the proposed method obtains 98.3% average accuracy with the sensing cuff on the shank and 96.5% accuracy with the sensing cuff on the thigh for level walking tasks. The system also accurately recognizes the gait events (largest error rate smaller than 0.6%) when walking speed changes. The preliminary results indicate that the proposed sensing strategy is a promising solution to provide useful gait information for exoskeleton control.
机译:步态相检测对于控制下肢外骨骼至关重要。在本文中,我们提出了一种用于步态相位检测的非接触电容传感策略,以取代脚压传感器。设计的电容传感系统可以记录人类肌肉收缩的信号。电极与皮肤不接触,固定在特别设计的袖口上。为了评估电容感测到步态相位检测的性能,在健康受试者上进行两项实验。采用选定的特点和滑动窗分类方法,该方法的平均精度与柄上的传感袖带有98.3%,精度与大腿上的传感袖口进行96.5%。当步行速度变化时,系统还准确地识别步态事件(小于0.6%的最大错误率)。初步结果表明,所提出的传感策略是提供有用的exoselox控制的有用步态信息的有希望的解决方案。

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