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INERTIAL GAIT PHASE DETECTION: POLYNOMIAL NULLSPACE APPROACH

机译:惯性步态相位检测:多项式零空间方法

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摘要

Detection of gait phases (swing and stance or more detailed) is a usual mean of feedback in closed-loop control of Functional Electrical Stimulation (FES) used for improving gait of persons with some motor control disability in a lower extremity, e.g., drop-foot problem. This paper presents a use of linear fault detection technique based on polynomial matrices for detection of gait phases. Data collected from two-axial accelerometer placed on a shank is lead to detector producing a residual signal which indicates an event by getting away from zero. The residual generator relies on linearised model of accelerometer measurement during stance phase to detect rising heel. Detection of heel rise together with threshold detection of peaks in measured signals during heel-strike and several empiric constraints (e.g., timeouts) forms the gait phase detector.
机译:步态阶段(摆动和姿势或更详细)的检测是功能性电刺激(FES)闭环控制中通常的反馈手段,用于改善下肢某些运动控制障碍者的步态,例如跌落脚的问题。本文提出了一种基于多项式矩阵的线性故障检测技术,用于步态相位的检测。从放置在柄上的两轴加速度计收集的数据被引导至检测器,该检测器产生残余信号,该信号通过远离零来指示事件。残差生成器在姿态阶段依靠加速度计测量的线性化模型来检测后跟。脚跟抬高的检测与阈值检测以及在脚跟打击过程中测量信号中的峰值的阈值检测以及一些经验约束(例如超时)一起构成步态相位检测器。

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