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Design of a Novel Passive Wireless Integrated SAW-Based Antenna Sensor for Structural Health Monitoring

机译:用于结构健康监测的新型无源无线集成锯天线传感器的设计

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摘要

A novel passive wireless integrated SAW-based antenna sensor for strain sensing is presented in this paper. A SAW delay line scheme is proposed for signal modulation, which could distinguish the backscattered data from environmental clutter in time domain. The theoretical relationship between the antenna resonance frequency shifts, the temperature, and the applied strain was established. A multiphysical coupled simulation process is proposed to improve the simulation accuracy. By comparing the phase shift of adjacent echoed data which is generated by SAW reflective grating, the temperature information could be extracted exactly and the effect of temperature fluctuation on the resonance frequency could be compensated. A more accurate passive (battery-free) wireless strain sensing could be provided by this proposed integrated antenna sensor than the previous proposed methods. Simulation and experimental results demonstrate the effectiveness of the sensor.
机译:本文提出了一种用于应变感测的新型无源无线集成锯天线传感器。提出了一种用于信号调制的锯延迟线方案,其可以将反向散射数据与时域中的环境杂波区分。建立了天线共振频率偏移,温度和施加应变之间的理论关系。提出了一种多体耦合仿真过程来提高模拟精度。通过比较通过SAW反射光栅产生的相邻回波数据的相移,可以完全提取温度信息,并且可以补偿谐振频率上的温度波动的效果。这一提出的集成天线传感器可以提供比以前提出的方法更准确的被动(无电池)无线应变感测。模拟和实验结果表明了传感器的有效性。

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