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An accurate wearable foot clearance estimation system: toward a real-time measurement system

机译:准确的可穿戴足部间隙估计系统:朝向实时测量系统

摘要

This paper presents an accurate, robust, wearable measurement system for foot clearance estimation along with algorithms to provide a real-time estimate of foot height and orientation. Different configurations of infrared distance meter sensors were used, both alone and in combination with an inertial measurement unit. In order to accurately estimate the foot clear- ance when in presence of daylight and when the foot orientation changes dynamically during walking, several algorithms were designed based on physics of sensors and tuned using the acquired data against a reference system. These algorithms, specific to the number of sensors, include the estimators of the foot orientation and estimators of the foot clearance. These estimators are tested on normal walking (rms error ≤ 8.4 mm) and walking with exag- gerated step heights and inversion-eversion rotations. A Bayesian fusion of estimators was also implemented to better cope with the extreme and abnormal walking kinematics while maintaining a high performance for normal walking. All estimators were trained on uniformly distributed bootstrapped sub-samples of data and tested on several normal and abnormal walking data. The results proved the robustness of the proposed system against variations in the gait kinematics ( | mean |± standard deviation of error for heel and toe clearance was equal to or smaller than 3.1 ± 9.3 mm when using a Bayesian fusion of three different estimators) and environment lighting (with an introduced error of 1 to 4% of actual distance).
机译:本文介绍了一种用于脚部间隙估计的准确,可靠,可穿戴的测量系统,以及可实时估计脚的高度和方向的算法。红外测距仪传感器的不同配置均可单独使用,也可与惯性测量单元结合使用。为了在有日光的情况下以及步行过程中脚的方向动态变化时准确地估计脚的间隙,基于传感器的物理原理设计了几种算法,并使用获取的数据针对参考系统进行了调整。特定于传感器数量的这些算法包括脚朝向的估算器和脚间隙的估算器。这些估算器在正常步行(均方根误差≤8.4 mm)和步行步高和上下反转旋转的情况下进行测试。还实施了贝叶斯估计器融合,以更好地应对极端和异常的步行运动学,同时保持正常步行的高性能。所有估计器都接受了均匀分布的自举数据子样本的训练,并测试了一些正常和异常的步行数据。结果证明了所提出的系统针对步态运动变化的鲁棒性(当使用三个不同估计量的贝叶斯融合时,|鞋跟和脚趾间隙的误差的平均值| |平均值|±等于或小于3.1±9.3 mm)和环境照明(引入的误差为实际距离的1-4%)。

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