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Method for Wearable Kinematic Gait Analysis Using a Harmonic Oscillator Applied to the Center of Mass

机译:使用谐波振荡器施加到质心的可穿戴运动学步态分析的方法

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摘要

A model based on a harmonic oscillator describing human walking and balance with the sinusoidal trajectory of the center of mass of a subject during gait is presented. This model allows overcoming the traditional drift due to the double integration of raw acceleration data. The protocol uses a single 3D accelerometer worn at the pelvis level. The system computes the spatiotemporal gait and balance parameters when the subject is walking with or without aids. An incremental methodological approach is proposed and followed in the implementation and accuracy assessment. Eleven healthy subjects have participated to the study performing 6 trials over a fixed linear walking path at a self-selected speed. For reference, the protocol has imposed the execution of 52 steps whose length has been fixed at 60 cm. Different processing methods have been implemented and tested. The model identifies steps, walking time, and stepping frequency with an excellent reliability (absolute percentage accuracy error < 5%). When the information about the expected step length is given to the model, the percentage error in the measure of walking distance and speed is 3.25%. Without this input, this error rises to 4.95%, while for the anthropometric method is 3.68%.
机译:呈现了一种基于谐波振荡器的模型,描述了在步态期间,具有对象的质量中心的正弦轨迹的谐波振荡器。由于原始加速数据的双重集成,该模型允许克服传统漂移。该协议使用骨盆级别佩戴的单个3D加速度计。当受试者一起使用或没有艾滋病时,系统计算时空步态和平衡参数。在实施和准确性评估中提出并遵守增量方法方法。 11个健康的科目参与了在一个固定的线性步行路径上以自选速度执行6次试验的研究。参考,协议施加了52个步长,其长度已固定为60厘米。已经实施和测试了不同的处理方法。该模型识别具有出色的可靠性(绝对百分比精度误差<5%)的步骤,步行时间和踩踏频率。当对模型提供预期步长的信息时,步行距离和速度测量的百分比误差为3.25%。如果没有此输入,则此误差上升至4.95%,而对于人类测量方法为3.68%。

著录项

  • 来源
    《Journal of Sensors》 |2018年第2期|共14页
  • 作者单位

    Politecn Milan Dept Design Via Giovanni Durando 38-A I-20158 Milan Italy;

    Politecn Milan Dept Design Via Giovanni Durando 38-A I-20158 Milan Italy;

    Politecn Milan Dept Design Via Giovanni Durando 38-A I-20158 Milan Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 TP212;
  • 关键词

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