Material Identification with Commodity Wi-Fi Devices

Chao Feng, Xinyi Li, Liqiong Chang, Jie Xiong, Xiaojiang Chen, Dingyi Fang, Baoying Liu, Feng Chen, Zhang Tao
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引用次数: 5

Abstract

Target material identification is playing an important role in our everyday life. This paper introduces a device-free target material identification system, implemented on ubiquitous and cheap commercial off-the-shelf (COTS) Wi-Fi devices. The intuition is that different materials produce different amounts of phase and amplitude changes when a target appears on the line-of-sight (LoS) of a radio frequency (RF) link. However, due to multipath and hardware imperfection, the measured phase and amplitude of the channel state information (CSI) are very noisy. We thus present novel CSI pre-processing schemes to address the multipath and hardware noise issues before they can be used for accurate material sensing. Comprehensive real-life experiments demonstrate that we can identify 10 commonly seen liquids at an overall accuracy higher than 95% with strong multipath indoors.
商品Wi-Fi设备的材料识别
目标材料识别在我们的日常生活中起着重要的作用。本文介绍了一种无设备的目标材料识别系统,该系统实现在无处不在的廉价商用现货(COTS) Wi-Fi设备上。直觉是,当目标出现在射频(RF)链路的视距(LoS)上时,不同的材料会产生不同数量的相位和幅度变化。然而,由于多径和硬件的缺陷,测量的信道状态信息(CSI)的相位和幅度具有很大的噪声。因此,我们提出了新的CSI预处理方案,以解决多路径和硬件噪声问题,然后才能用于精确的材料传感。综合现实生活实验表明,在室内强多径条件下,我们可以识别10种常见液体,总体准确率高于95%。
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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