Ultrasonic range measurements on the human body

D. Weenk, B. Beijnum, E. Droog, H. Hermens, P. Veltink
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引用次数: 10

Abstract

Ambulatory range estimation on the human body is important for the assessment of the performance of upper- and lower limb tasks outside a laboratory. In this paper an ultrasound sensor for estimating ranges on the human body is presented and validated during gait. The distance between the feet is estimated based on the time of flight and compared to an optical reference. The signal to noise ratio of the received signal is used as a measure for the uncertainty of the range estimate. For example when rejecting distance estimates with a signal to noise ratio smaller than 5, the mean absolute distance difference between the ultrasound sensor and an optical reference system is 7.0 mm (sd 7.1 mm) over six walking trials.
对人体的超声波范围测量
对人体的活动范围估计是重要的表现评估上肢和下肢任务在实验室之外。本文提出了一种用于人体步态距离估计的超声传感器,并对其进行了验证。两脚之间的距离是根据飞行时间估计的,并与光学参考进行比较。用接收信号的信噪比作为距离估计不确定性的度量。例如,当拒绝信噪比小于5的距离估计时,超声传感器与光学参考系统之间的平均绝对距离差为7.0 mm (sd 7.1 mm)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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