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Kalman-Filtering-Based Joint Angle Measurement with Wireless Wearable Sensor System for Simplified Gait Analysis

机译:无线穿戴式传感器系统基于卡尔曼滤波的关节角度测量,可简化步态分析

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摘要

The aim of this study is to realize a simplified gait analysis system using wearable sensors. In this paper, a joint angle measurement method using Kalman filter to correct gyroscope signals from accelerom-eter signals was examined in measurement of hip, knee and ankle joint angles with a wireless wearable sensor system, in which the sensors were attached on the body without exact positioning. The lower limb joint angles of three healthy subjects were measured during gait with the developed sensor system and a 3D motion measurement system in order to evaluate the measurement accuracy. Then, 10 m walking measurement was performed under different walking speeds with a healthy subject in order to find the usefulness of the system as a simplified gait analysis system. The joint angles were measured with reasonable accuracy, and the system showed joint angle changes that were similar to those shown in a previous report as walking speed changed. It would be necessary to examine the influence of sensor attachment position and method for more stable measurement, and also to study other parameters for gait evaluation.
机译:这项研究的目的是使用可穿戴传感器实现一个简化的步态分析系统。在本文中,研究了使用卡尔曼滤波器从加速器信号中校正陀螺仪信号的关节角度测量方法,该方法通过无线可穿戴传感器系统测量髋部,膝盖和踝关节的角度,其中传感器无需安装在身体上精确定位。使用开发的传感器系统和3D运动测量系统在步态中测量了三名健康受试者的下肢关节角度,以评估测量的准确性。然后,以健康的受试者在不同的步行速度下进行10 m步行测量,以发现该系统作为简化步态分析系统的有用性。关节角度的测量具有合理的精度,并且系统显示关节角度的变化与先前报告中显示的步行速度变化类似。为了更稳定的测量,有必要检查传感器连接位置和方法的影响,并研究其他参数进行步态评估。

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