A Microwave Sensor Based on Split Ring Resonators for Differential Measuring Permittivity

Yang Liu, Kuiwen Xu, Shichang Chen, Peng Zhao, Gaofeng Wang, Xiuzhu Ye
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Abstract

In this paper, a microwave sensor with the dual three-layer electrically small resonators based on split ring resonators (SRRs) is proposed to measure the permittivity of the small sample of unknown materials. By virtue of SRRs, the single resonator has merits of the compact size $(0.052 \lambda_{0} $$ \times 0.052 \lambda_{0} $), high quality factor (Q) value and ultra-low radiation. And combined with the design of the differential measurement structure, this sensor can greatly compensate the interference from the environment. Different from the sensor with single resonator using reflection coefficients, the measurement process is greatly simplified with transmission coefficients by the proposed sensor.
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基于分裂环谐振器的差分测量介电常数微波传感器
本文提出了一种基于劈裂环谐振器(SRRs)的双三层电小谐振器微波传感器,用于测量未知材料小样品的介电常数。利用srr,单腔具有体积小($(0.052 \lambda_{0} $$ \times 0.052 \lambda_{0} $)、高品质因数(Q)值和超低辐射等优点。并且结合差分测量结构的设计,该传感器可以极大地补偿环境的干扰。与采用反射系数的单谐振腔传感器不同,该传感器采用透射系数大大简化了测量过程。
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