Quan Chun-He, Zhang Xiao-Yu, Lee Jong-Chul
JCET Stats ChipPAC Korea, Jayumuyeok-ro, Jung-gu, Incheon 22397, Republic of Korea.
Department of Electronic Convergence Engineering, Kwangwoon University, 20 Kwangwoon-ro, Nowon-gu, Seoul 01897, Republic of Korea.
Micromachines (Basel). 2023 Feb 25;14(3):542. doi: 10.3390/mi14030542.
Substrate-integrated waveguides (SIWs) are widely used in microwave systems owing to their low cost and ease of integration. In this study, an SIW-based resonator that reacts to the complex permittivity variation of solutions with dimensions of 79.2 mm × 59.8 mm is introduced. This octagon-shaped sensor can be installed on a preliminary monitoring system to test water quality by observing the parameter variations caused by external factors. The resonant structure was used to test different concentrations of ethanol-water and acetone-water mixtures for verification. The resonant frequency and quality factor (Q-factor) were found to vary with the relative complex permittivity of the liquid in the S-band, and the electric field distribution varied when liquid droplets were placed in the center of the substrate. The designed sensor operates at 2.45 GHz in the air, and the observed minimum resonant frequency shift with liquid was 15 MHz. The measurement error was approximately 3.1%, and the results reveal a relationship between the resonant frequency and temperature as well. Considering the observed sources of error, the measured relative permittivity is consistent with the actual values. The proposed sensor is economically convenient and suitable for various test environments.
基片集成波导(SIW)因其低成本和易于集成而在微波系统中得到广泛应用。在本研究中,介绍了一种基于SIW的谐振器,其对尺寸为79.2 mm×59.8 mm的溶液复介电常数变化作出反应。这种八边形传感器可安装在初步监测系统上,通过观察外部因素引起的参数变化来测试水质。采用谐振结构对不同浓度的乙醇 - 水和丙酮 - 水混合物进行测试以进行验证。发现在S波段,谐振频率和品质因数(Q因子)随液体的相对复介电常数而变化,并且当液滴放置在基片中心时电场分布会发生变化。所设计的传感器在空气中工作频率为2.45 GHz,观察到的液体引起的最小谐振频率偏移为15 MHz。测量误差约为3.1%,结果还揭示了谐振频率与温度之间的关系。考虑到观察到的误差来源,测量的相对介电常数与实际值一致。所提出的传感器经济方便,适用于各种测试环境。