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基于半集总谐振器的反射模式相位变化介电常数传感器的灵敏度优化探讨

A Discussion on Sensitivity Optimization in Reflective-Mode Phase-Variation Permittivity Sensors Based on Semi-Lumped Resonators.

作者信息

Su Lijuan, Vélez Paris, Casacuberta Pau, Canalias Xavier, Kurniawati Nazmia, Martín Ferran

机构信息

Centre d'Investigació en Metamaterials per a la Innovació en Tecnologíes Electrònica i de Comunicación (CIMITEC), Departament d'Enginyeria Electrònica, Universitat Autònoma de Barcelona, 08193 Bellaterra, Spain.

出版信息

Sensors (Basel). 2025 Jan 25;25(3):735. doi: 10.3390/s25030735.

Abstract

Typically, the operating frequency in single-frequency reflective-mode phase-variation permittivity sensors based on semi-lumped resonators (e.g., step-impedance resonators-SIRs) is set to the resonance frequency of the sensing resonator when it is loaded with the so-called reference (REF) material, . For the case of an SIR-based sensor, if the ratio between the inductance and the capacitance is high (corresponding to a high- resonator), the sensitivity in the limit of small perturbations of the dielectric constant (in the vicinity of that of the REF material) is also high. However, the optimum frequency for sensitivity optimization in the limit of small perturbations neither corresponds to the resonance frequency nor coincides with the frequency of maximum phase slope. Such frequencies are calculated in this paper, and it is shown that the optimum frequency for sensitivity optimization is located between the frequency of maximum phase slope and the resonance frequency, although such frequencies tend to coincide for high- sensing resonators. This aspect is validated in this paper from electromagnetic simulation and experiment.

摘要

通常,基于半集总谐振器(例如,阶梯阻抗谐振器-SIRs)的单频反射模式相位变化介电常数传感器的工作频率设置为传感谐振器在加载所谓参考(REF)材料时的谐振频率。对于基于SIR的传感器,如果电感与电容之比很高(对应于高Q谐振器),则在介电常数小扰动极限(在REF材料的介电常数附近)下的灵敏度也很高。然而,在小扰动极限下用于灵敏度优化的最佳频率既不对应于谐振频率,也不与最大相位斜率频率重合。本文计算了此类频率,结果表明,尽管对于高Q传感谐振器此类频率趋于重合,但用于灵敏度优化的最佳频率位于最大相位斜率频率与谐振频率之间。本文通过电磁仿真和实验验证了这一方面。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66c0/11819867/712cbb433e4f/sensors-25-00735-g001.jpg

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