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基于磁电感谐振器的微波差分频率分裂传感器

Microwave Differential Frequency Splitting Sensor Using Magnetic-LC Resonators.

作者信息

Ebrahimi Amir, Beziuk Grzegorz, Scott James, Ghorbani Kamran

机构信息

School of Engineering, RMIT University, Melbourne, VIC 3001, Australia.

出版信息

Sensors (Basel). 2020 Feb 15;20(4):1066. doi: 10.3390/s20041066.

Abstract

A differential microwave permittivity sensor and comparator is designed using a microstrip transmission line loaded with a magnetic-LC resonator. The microstrip transmission line is aligned with the electric wall of the resonator. The sensor shows a single transmission zero, when it is unloaded or loaded symmetrically on both halves. A second notch appears in the transmission response by asymmetrical dielectric loading on the two halves of the device. The frequency splitting is used to characterize the dielectric properties of the samples under test. The sensitivity of the sensor is enhanced by removing the mutual coupling between the two halves of the magnetic-LC resonator using a metallic wall. The sensors' operation principle is explained through a circuit model analysis. A prototype of the designed sensor is fabricated and measurements are used for validation of the sensing concept. The sensor can be used for determination of the dielectric properties in solid materials or detecting defects and impurities in solid materials through a comparative measurement with a reference sample.

摘要

一种差分微波介电常数传感器和比较器采用加载磁LC谐振器的微带传输线进行设计。微带传输线与谐振器的电壁对齐。当传感器空载或两半对称加载时,会出现一个传输零点。通过对器件两半进行不对称介电加载,传输响应中会出现第二个陷波。频率分裂用于表征被测样品的介电特性。通过使用金属壁消除磁LC谐振器两半之间的相互耦合,提高了传感器的灵敏度。通过电路模型分析解释了传感器的工作原理。制作了所设计传感器的原型,并通过测量对传感概念进行验证。该传感器可用于测定固体材料的介电特性,或通过与参考样品进行比较测量来检测固体材料中的缺陷和杂质。

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