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RFID Harmonic for Vibration Sensing

机译:RFID谐波用于振动传感

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摘要

Conventional vibration sensing systems, equipped with specific sensors (e.g., accelerometer) and communication modules, are either expensive or cumbersome to deploy. Recently research community revisits this classic topic by taking advantage of off-the-shelf RFIDs. However, limited by low reading rate and long wavelength, current RFID based solutions can only sense low-frequency (e.g., below 100 Hz) mechanical vibrations with larger amplitude (e.g., >5 mm). To address the issue, this work presents TagSound, an RFID-based vibration sensing system that explores a tag's harmonic backscattering to recover high-frequency and tiny mechanical vibrations accurately. The key innovations are in two aspects: harmonics based sensing and a new recovery scheme. We implement TagSound with USRP platforms. Our comprehensive evaluation shows (i) TagSound can achieve a mean error of 0.37 Hz when detecting vibrations at frequencies below 100 Hz, and a mean error of 4.2 Hz even when the vibration frequency is up to 2500 Hz. (ii) TagSound can achieve a Hz-level frequency estimation even when the vibration amplitude is only 2 mm.
机译:传统的振动传感系统配备有特定的传感器(例如,加速度计)和通信模块,可以昂贵或繁琐地部署。最近,研究社区通过利用现成的RFID来重新审视这个经典主题。然而,受低读取率和长波长的限制,基于电流的基于RFID的解决方案只能感测具有较大幅度(例如,> 5mm)的低频(例如,低于100Hz)机械振动。为了解决这个问题,这项工作提供了TAGSOUND,一种基于RFID的振动传感系统,探讨了标签的谐波反向散射,以准确地回收高频和微小机械振动。关键创新有两个方面:基于谐波的感应和新的恢复方案。我们使用USRP平台实现TAGSound。我们的综合评估表明(i)TAGSound可以在频率低于100 Hz的频率时实现0.37 Hz的平均误差,即使振动频率高达2500Hz,平均误差也为4.2Hz。 (ii)塔下可以实现Hz级频率估计,即使振动幅度仅为2毫米。

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