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A Submersible Printed Sensor Based on a Monopole-Coupled Split Ring Resonator for Permittivity Characterization

机译:基于单极耦合开环谐振器的潜水印刷传感器的介电常数表征

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摘要

This work presents a non-invasive, reusable and submersible permittivity sensor that uses a microwave technique for the dielectric characterization of liquid materials. The proposed device consists of a compact split ring resonator excited by two integrated monopole antennas. The sensing principle is based on the notch introduced by the resonators in the transmission coefficient, which is affected due to the introduction of the sensor in a new liquid material. Then, a frequency shift of the notch and the Q-factor of the proposed sensor are related with the changes in the surrounding medium. By means of a particular experimental procedure, commercial liquids are employed to obtain the calibration curve. Thus, a mathematical equation is obtained to extract the dielectric permittivity of liquid materials with unknown dielectric properties. A good match between simulated and experimental results is obtained, as well as a high Q-factor, compact size, good sensitivity and high repeatability for use in sensing applications. Sensors like the one here presented could lead to promising solutions for characterizing materials, particularly in determining material properties and quality in the food industry, bio-sensing and other applications.
机译:这项工作提出了一种非侵入性,可重复使用且可浸入水中的介电常数传感器,该传感器使用微波技术对液体材料进行介电表征。所提出的设备包括一个紧凑的裂环谐振器,该谐振器由两个集成的单极天线激发。传感原理基于谐振器在传输系数中引入的缺口,由于在新的液体材料中引入了传感器,该缺口会受到影响。然后,所提出的传感器的陷波频率偏移和Q因数与周围介质的变化有关。通过特定的实验程序,使用市售液体来获得校准曲线。因此,获得数学方程式以提取具有未知介电特性的液体材料的介电常数。获得了仿真结果与实验结果之间的良好匹配,以及在传感应用中使用的高Q因子,紧凑的尺寸,良好的灵敏度和高重复性。像这里介绍的那样的传感器可能会导致有希望的解决方案,用于表征材料,特别是在食品工业,生物传感和其他应用中确定材料的特性和质量。

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