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A study on gait analysis by measuring axis rotation based on 3D magnetic and acceleration sensors

机译:基于3D磁性和加速度传感器测量轴旋转步态分析的研究。

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Human gait analysis has been an active research topic for many years. Most gait studies are classified into two groups. One is the vision-based approach that generally uses a video camera. The other is the wearable-sensor approach that typically uses acceleration and/or gyro sensors. The vision-based approach is mainly used for post analysis enabling accurate evaluation of 3D gait behavior; however, a fixed viewing angle involving a calibration process may be required. In contrast, the wearable-sensor approach can be used for real-time analysis without limits to the viewing angle. In this paper, we introduce a new wearable-sensor-based gait analysis method using a combination of 3D acceleration and magnetic sensors that make it possible to measure 3D arbitrary-axis rotation. To confirm the accuracy of measurement, we measured the behavior of the thigh angle while applying various forms of walking. The validity of the proposed approach was confirmed by applying a newly built sensor system.
机译:步态分析多年来一直是活跃的研究主题。大多数步态研究都分为两组。一种是通常使用摄像机的基于视觉的方法。另一种是可穿戴传感器方法,通常使用加速度传感器和/或陀螺仪传感器。基于视觉的方法主要用于后期分析,可以准确评估3D步态行为;但是,可能需要涉及校准过程的固定视角。相反,可穿戴式传感器方法可用于实时分析,而不受视角的限制。在本文中,我们介绍了一种新的基于可穿戴传感器的步态分析方法,该方法结合了3D加速度和电磁传感器的使用,从而可以测量3D任意轴的旋转。为了确认测量的准确性,我们在应用各种形式的步行时测量了大腿角度的行为。所提出的方法的有效性通过应用新型传感器系统得到了证实。

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