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基于腰部三轴加速度信号的正常步态速度估计的运动学人体行走模型。

A kinematic human-walking model for the normal-gait-speed estimation using tri-axial acceleration signals at waist location.

机构信息

Department of Electrical and Control Engineering, National Chiao Tung University, Hsinchu 300, Taiwan, ROC.

出版信息

IEEE Trans Biomed Eng. 2013 Aug;60(8):2271-9. doi: 10.1109/TBME.2013.2252345. Epub 2013 Mar 15.

Abstract

This study aims at estimating the human walking speed using wearable accelerometers by proposing a novel virtual inverted pendulum model. This model not only keeps the important characteristics of both the biped rolling-foot and the inverted pendulum model, but also makes the speed estimation feasible using human body acceleration. Rather than using statistical methods, the proposed kinematic walking model enables calibration of the parameters during walking using only one tri-axial accelerometer on the waist that collects the user's body acceleration. In addition, this model also includes the effect of rotation of the waist within a walking cycle, which improves the estimation accuracy. Experimental results for a group of humans show a 0.58% absolute error mean and 0.72% error deviation, which is far better than the results of other known studies with accelerometers mounted on the upper body.

摘要

本研究旨在通过提出一种新的虚拟倒立摆模型,利用可穿戴式加速度计来估计人类行走速度。该模型不仅保留了双足滚动脚和倒立摆模型的重要特征,还使得使用人体加速度进行速度估计成为可能。与使用统计方法不同,所提出的运动学步行模型仅使用腰部的一个三轴加速度计(收集用户的身体加速度)即可在步行过程中校准参数。此外,该模型还包括在步行周期内腰部旋转的影响,从而提高了估计的准确性。对一组人类的实验结果表明,绝对误差均值为 0.58%,误差偏差为 0.72%,远优于其他已知的将加速度计安装在上半身的研究结果。

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