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Passive wireless antenna sensor for strain and crack sensing - Electromagnetic modeling, simulation, and testing

机译:用于应变和裂纹感应的无源无线天线传感器-电磁建模,仿真和测试

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This research investigates a passive wireless antenna sensor designed for strain and crack sensing. When the antenna experiences deformation, the antenna shape changes, causing a shift in the electromagnetic resonance frequency of the antenna. A radio frequency identification (RFID) chip is adopted for antenna signal modulation, so that a wireless reader can easily distinguish the backscattered sensor signal from unwanted environmental reflections. The RFID chip captures its operating power from an interrogation electromagnetic wave emitted by the reader, which allows the antenna sensor to be passive (battery-free). This paper first reports the latest simulation results on radiation patterns, surface current density, and electromagnetic field distribution. The simulation results are followed with experimental results on the strain and crack sensing performance of the antenna sensor. Tensile tests show that the wireless antenna sensor can detect small strain changes lower than 20 με, and can perform well at large strains higher than 10 000 με. With a high-gain reader antenna, the wireless interrogation distance can be increased up to 2.1 m. Furthermore, an array of antenna sensors is capable of measuring the strain distribution in close proximity. During emulated crack and fatigue crack tests, the antenna sensor is able to detect the growth of a small crack.
机译:这项研究调查了一种用于应变和裂纹感应的无源无线天线传感器。当天线变形时,天线形状会发生变化,从而导致天线的电磁谐振频率发生偏移。射频识别(RFID)芯片用于天线信号调制,因此无线阅读器可以轻松地区分反向散射的传感器信号和有害的环境反射。 RFID芯片从阅读器发出的询问电磁波中捕获其工作功率,从而使天线传感器成为无源(无电池)。本文首先报告有关辐射方向图,表面电流密度和电磁场分布的最新仿真结果。仿真结果之后是关于天线传感器的应变和裂纹感应性能的实验结果。拉伸测试表明,无线天线传感器可以检测到低于20με的较小应变变化,并且在高于10,000με的较大应变下性能良好。使用高增益阅读器天线,无线询问距离可以增加到2.1 m。此外,天线传感器阵列能够测量附近的应变分布。在模拟裂纹和疲劳裂纹测试期间,天线传感器能够检测到小裂纹的增长。

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