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A Noncontact Microwave Sensor Based on Cylindrical Resonator for Detecting Concentration of Liquid Solutions

机译:基于圆柱谐振器的非接触微波传感器,用于检测液体溶液浓度

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摘要

This article presents a microwave sensor composed of a cylindrical cavity resonator and thin plastic liquid container for noncontactual detection of the liquid solution concentration. The resonant frequency is tuned to around 11 GHz, resulting in miniaturized dimensions and easy integration with a wireless sensor system. The sensor is with a small volume of 21 cm 3 and sensitivity of 0.4 kHz/(mg/L). Simulated results show a good linear relationship between the concentration of the sample solution and resonant frequency shift with the high sensitivity, which is consistent with the experimental result. Compared with other designs, the sensor also has a simple structure, low cost and easy implementation to in-situ and in-vitro detection scenarios.
机译:本文介绍了一种微波传感器,其由圆柱形腔谐振器和薄塑料液体容器组成,用于液体溶液浓度的非接触性检测。谐振频率调谐到大约11GHz,导致小型化尺寸和与无线传感器系统的简单集成。传感器的体积小于21cm 3 和0.4kHz /(mg / L)的灵敏度。模拟结果显示了样品溶液浓度与具有高灵敏度的谐振频率偏移之间的良好线性关系,这与实验结果一致。与其他设计相比,传感器还具有简单的结构,成本低,易于实现的原位和体外检测方案。

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