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Battery-less wireless interrogation of microstrip patch antenna for strain sensing

机译:微带贴片天线的无电池无线询问,用于应变传感

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This paper presents a battery-less wireless interrogation system that can measure the resonant frequency of a microstrip patch antenna with a fine resolution. Since the antenna resonant frequency is sensitive to strain-induced deformations, wireless interrogation of the antenna sensor for strain measurement was demonstrated. By implementing a microwatt impedance switching circuit at the sensor node, the antenna backscattering is amplitude modulated at the sensor node so that it can be separated from the structural backscattering at the interrogator. The sensor node can be powered by a small photocell and thus achieve battery-less operation. The operating principle of the wireless interrogation system is first described, followed by the implementation and characterization of the wireless interrogation system. The antenna resonant frequency shifts were correlated to the applied strains through a static tensile experiment. An excellent agreement between the experimental results and the analytical prediction was obtained. A power transmission model was established and validated with experimental measurements. Based on this power transmission model, we estimated that the maximum interrogation distance of the wireless strain measurement system is 26m.
机译:本文提出了一种无电池无线询问系统,该系统可以测量具有高分辨率的微带贴片天线的谐振频率。由于天线谐振频率对应变引起的变形敏感,因此对用于应变测量的天线传感器进行了无线询问。通过在传感器节点处实现微瓦阻抗切换电路,可以在传感器节点处对天线的反向散射进行幅度调制,以便可以将其与询问器处的结构反向散射分开。传感器节点可以由小型光电管供电,从而实现无电池操作。首先描述了无线询问系统的工作原理,然后介绍了无线询问系统的实现和特性。通过静态拉伸实验,将天线谐振频率偏移与施加的应变相关联。实验结果与分析预测之间取得了极好的一致性。建立了动力传输模型,并通过实验测量进行了验证。基于该功率传输模型,我们估计无线应变测量系统的最大询问距离为26m。

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