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基于表面声波的无线无源温度传感系统的设计与特性分析

Design and Characterization of Surface Acoustic Wave-Based Wireless and Passive Temperature Sensing System.

作者信息

Zhou Zhixin, Wang Hui, Lou Liang

机构信息

School of Microelectronics, Shanghai University, Shanghai 201800, China.

The Shanghai Industrial µTechnology Research Institute, Shanghai 201899, China.

出版信息

Micromachines (Basel). 2024 Apr 18;15(4):544. doi: 10.3390/mi15040544.

Abstract

The surface acoustic wave (SAW) temperature sensor has received significant attention due to its wirelessly powered, battery-free, and chipless capabilities. This paper proposes a wireless sensing system comprising a one-port SAW resonator, helix antenna, and transceiver circuit. The SAW resonator used in this system is based on aluminum nitride (AlN) thin film, which exhibits high velocity and excellent piezoelectric properties. Simulations and experiments were conducted to investigate the performance of the designed SAW resonator. A helix antenna was also designed using finite element simulation to facilitate signal transmission between the SAW temperature sensor and the transceiver. An impedance-matching network was introduced between the helix antenna and the SAW resonator to optimize signal transmission. When the wireless SAW temperature sensor was placed within a certain distance of the mother antenna, the reflection peak of the SAW resonator was observed in the spectrum of the return signal. The frequency of the echo signal increased almost linearly as the temperature increased during the temperature tests. The fitted temperature coefficient of frequency (TCF) was -31.34 ppm/°C, indicating that the wireless temperature sensing system has high-temperature sensitivity.

摘要

表面声波(SAW)温度传感器因其无线供电、无需电池和无芯片的特性而备受关注。本文提出了一种无线传感系统,该系统由一个单端口SAW谐振器、螺旋天线和收发器电路组成。本系统中使用的SAW谐振器基于氮化铝(AlN)薄膜,其具有高速度和优异的压电性能。进行了仿真和实验以研究设计的SAW谐振器的性能。还使用有限元模拟设计了一个螺旋天线,以促进SAW温度传感器与收发器之间的信号传输。在螺旋天线和SAW谐振器之间引入了一个阻抗匹配网络,以优化信号传输。当无线SAW温度传感器放置在母天线一定距离内时,在回波信号的频谱中观察到了SAW谐振器的反射峰。在温度测试期间,随着温度升高,回波信号的频率几乎呈线性增加。拟合的频率温度系数(TCF)为-31.34 ppm/°C,表明该无线温度传感系统具有高温灵敏度。

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