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HomeOSD:利用毫米波雷达进行设备运行状态检测

HomeOSD: Appliance Operating-Status Detection Using mmWave Radar.

作者信息

Sheng Yinhe, Li Jiao, Ma Yongyu, Zhang Jin

机构信息

Shenzhen Key Laboratory of Safety and Security for Next Generation of Industrial Internet, Research Institute of Trustworthy Autonomous Systems, Department of Computer Science and Engineering, Southern University of Science and Technology, Shenzhen 518055, China.

出版信息

Sensors (Basel). 2024 May 2;24(9):2911. doi: 10.3390/s24092911.

Abstract

Within the context of a smart home, detecting the operating status of appliances in the environment plays a pivotal role, estimating power consumption, issuing overuse reminders, and identifying faults. The traditional contact-based approaches require equipment updates such as incorporating smart sockets or high-precision electric meters. Non-constant approaches involve the use of technologies like laser and Ultra-Wideband (UWB) radar. The former can only monitor one appliance at a time, and the latter is unable to detect appliances with extremely tiny vibrations and tends to be susceptible to interference from human activities. To address these challenges, we introduce HomeOSD, an advanced appliance status-detection system that uses mmWave radar. This innovative solution simultaneously tracks multiple appliances without human activity interference by measuring their extremely tiny vibrations. To reduce interference from other moving objects, like people, we introduce a Vibration-Intensity Metric based on periodic signal characteristics. We present the Adaptive Weighted Minimum Distance Classifier (AWMDC) to counteract appliance vibration fluctuations. Finally, we develop a system using a common mmWave radar and carry out real-world experiments to evaluate HomeOSD's performance. The detection accuracy is 95.58%, and the promising results demonstrate the feasibility and reliability of our proposed system.

摘要

在智能家居环境中,检测环境中电器的运行状态对于估算功耗、发出过度使用提醒以及识别故障起着关键作用。传统的基于接触的方法需要设备更新,例如安装智能插座或高精度电表。非接触式方法则涉及使用激光和超宽带(UWB)雷达等技术。前者一次只能监测一台电器,而后者无法检测到振动极其微小的电器,并且容易受到人类活动的干扰。为应对这些挑战,我们引入了HomeOSD,这是一种使用毫米波雷达的先进电器状态检测系统。这种创新解决方案通过测量电器极其微小的振动,在不受人类活动干扰的情况下同时跟踪多个电器。为减少来自其他移动物体(如人)的干扰,我们引入了一种基于周期性信号特征的振动强度度量。我们提出了自适应加权最小距离分类器(AWMDC)来抵消电器振动波动。最后,我们使用普通毫米波雷达开发了一个系统,并进行实际实验来评估HomeOSD的性能。检测准确率为95.58%,这些有前景的结果证明了我们所提出系统的可行性和可靠性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c97/11086392/79ebfd4dbb68/sensors-24-02911-g001.jpg

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