Monitoring Upper-Limb Activity Based on Radio Frequency Time-of-Flight Distance Measurement

Jordan Lui, Alex Naylor, M. Zhou, Mahta Khoshnam, Neha Chhatre, A. Mahanfar, C. Menon
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Abstract

Unobtrusive human motion tracking has been facilitated by realizing various sensing technologies in the form of a network of wearable sensors. These sensors are well-suited for applications that call for continuous or tele-motion tracking, nevertheless, the research for characterizing their performance in different applications is ongoing. The study presented in this paper explores the potential of constructing a wearable sensor system based on radio frequency time-of-flight distance measurement for monitoring activities of upper limbs. In this regard, a prototype sensor is developed and experimentally characterized. The performance of the system is then evaluated in an elbow flexion-extension scenario and it is shown that the system can be easily calibrated for use in different environments and is able to estimate the hand distance from body with an accuracy of 4.66 cm. This preliminary study is presented as a proof-of-concept that designing a wearable sensor system based on radio frequency time-of-flight distance measurement is feasible and can be a potential solution for telemonitoring of upper limb activity in a free-living environment.
基于射频飞行时间距离测量的上肢活动监测
通过以可穿戴传感器网络的形式实现各种传感技术,促进了不显眼的人体运动跟踪。这些传感器非常适合要求连续或远程运动跟踪的应用,然而,在不同应用中表征其性能的研究仍在进行中。本文的研究探讨了构建基于射频飞行时间距离测量的可穿戴传感器系统用于监测上肢活动的潜力。在这方面,开发了一个原型传感器并进行了实验表征。然后在肘部屈伸场景中评估了系统的性能,结果表明,该系统可以很容易地校准用于不同环境,并且能够以4.66 cm的精度估计手与身体的距离。这项初步研究是一个概念验证,设计一个基于射频飞行时间距离测量的可穿戴传感器系统是可行的,可以成为在自由生活环境中远程监测上肢活动的潜在解决方案。
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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