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Wireless measurement of temperature using surface acoustic waves sensors

机译:使用表面声波传感器无线测量温度

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摘要

Surface acoustic wave devices can be used as wireless sensor elements (SAW transponders) for measuring physical quantities such as temperature that do not need any power supply and may be accessed wirelessly. A complete wireless sensor system consists of such a SAW transponder and a local radar transceiver, is widely discussed. The antenna of the SAW transponder receives an RF burst in the VHF/UHF band transmitted by the radar transceiver. The reader unit performs a radar measurement of the impulse response of the SAW transponder via a high-frequency electromagnetic radio link. A temperature variation changes the SAW velocity and thereby the response pattern of the SAW device. By analyzing the time delay between backscattered pulses with different time delays we get a coarse estimation of the temperature of the SAW transponder. By using this information the ambiguity of /spl plusmn/2/spl pi/ in the phase differences between the pulses can be eliminated, which provides to an overall temperature resolution of /spl plusmn/0.2/spl deg/C.
机译:声表面波设备可用作无线传感器元件(SAW应答器),用于测量物理量(例如温度),不需要任何电源,可以无线访问。广泛讨论了由这样的SAW应答器和本地雷达收发器组成的完整的无线传感器系统。 SAW应答器的天线接收由雷达收发器发送的VHF / UHF频带中的RF突发。读取器单元通过高频电磁无线电链路对SAW应答器的脉冲响应进行雷达测量。温度变化会改变SAW速度,从而改变SAW器件的响应模式。通过分析具有不同时间延迟的反向散射脉冲之间的时间延迟,我们得到了SAW应答器温度的粗略估计。通过使用该信息,可以消除脉冲之间的相位差中的/ spl plusmn / 2 / spl pi /的歧义,从而提供了/ spl plusmn / 0.2 / spl deg / C的整体温度分辨率。

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