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Design and Implementation of 2.45 GHz Passive SAW Temperature Sensors with BPSK Coded RFID Configuration

机译:具有BPSK编码RFID配置的2.45 GHz无源声表面波温度传感器的设计与实现

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A surface acoustic wave based passive temperature sensor capable of multiple access is investigated. Binary Phase Shift Keying (BPSK) codes of eight chips were implemented using a reflective delay line scheme on a Y-Z LiNbO 3 piezoelectric substrate. An accurate simulation based on the combined finite- and boundary element method (FEM/BEM) was performed in order to determine the optimum design parameters. The scaling factor ‘s’ and time delay factor ‘τ’ were extracted using signal processing techniques based on the wavelet transform of the correlation function, and then evaluated at various ambient temperatures. The scaling factor ‘s’ gave a more stable and reliable response to temperature than the time delay factor ‘τ’. Preliminary results show that the sensor response is fast and consistent subject to ambient temperature and it exhibits good linearity of 0.9992 with temperature varying from 0 to 130 °C.
机译:研究了基于声表面波的无源温度传感器,可以进行多次访问。使用反射延迟线方案在Y-Z LiNbO 3压电基板上实现了八个芯片的二进制相移键控(BPSK)码。为了确定最佳设计参数,进行了基于有限元和边界元组合方法(FEM / BEM)的精确仿真。使用基于相关函数的小波变换的信号处理技术提取比例因子“ s”和时间延迟因子“τ”,然后在各种环境温度下进行评估。与时间延迟因子“τ”相比,缩放因子“ s”对温度的响应更加稳定和可靠。初步结果表明,传感器的响应在环境温度下快速且一致,并且在0至130°C的温度范围内表现出良好的线性(0.9992)。

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