Collaborative Sensing for Privacy Preserving Gait Tracking Using IoT Middleware

C. Shih, Tim-Yuao Wang, Jyun-Jhe Chou, Ze-Yu Chuang, Ching-Chih Chuang, Kwei-Jay Lin, Wei-Dean Wang, Kuo-Chin Huang
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引用次数: 6

Abstract

Gait velocity has become a valid and important metric for senior populations. However, existing approaches to measure gait velocity are either limited to specific location or too expensive to be applied. IoT middleware allows the systems to collect data in a large space in a collaborative manner. However, it is a great challenge of integrating large numbers of low-cost devices to accomplish the task. This paper presents the design, implementation, and findings of using low-cost thermal sensors to monitor the activity index in home environment. The system is built on top of WuKong middleware. The evaluation results show that the system can measure the gait velocity with negligible errors. When the parameters for noise filtering are correctly configured, the F-Score of the heat source detection can achieve 0.99.
基于物联网中间件的协同感知隐私保护步态跟踪
步态速度已成为老年人有效而重要的指标。然而,现有的测量步态速度的方法要么局限于特定的位置,要么太昂贵而无法应用。物联网中间件允许系统以协作方式在大空间中收集数据。然而,集成大量的低成本设备来完成这项任务是一个巨大的挑战。本文介绍了使用低成本的热传感器来监测家庭环境中的活动指数的设计、实现和结果。该系统建立在悟空中间件之上。评估结果表明,该系统可以测量步态速度,误差可以忽略不计。当噪声滤波参数配置正确时,热源检测的F-Score可达到0.99。
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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