Dual-band Resonant Complex Permittivity Sensor Based on Interdigital Capacitor Structure
DU Minghe1,2,WANG Zeyu1,2,YUAN Haoyun2,SHAO Linxiang2,FANG Lili2,BAO Xiue1,2
1.Tangshan Research Institute of Beijing Institute of Technology, Tangshan, Hebei 063010,China
2.School of Integrated Circuits and Electronics, Beijing Institute of Technology, Beijing 100081, China
Abstract:A dual-frequency resonant sensor is designed based on the interdigital capacitance structure to measure the complex permittivity of liquid.The advantages of the sensor in sensitivity,miniaturization and operating bandwidth are verified by simulation analysis,machining and measurement.The results of simulation and measurement show that the sensitivity of the dual-band resonant sensor is as high as 5.2%,which can realize the nondestructive measurement of the complex permittivity of the liquid at two frequency points with a very small amount of liquid at the same time,and can measure the concentration of methanol-ethanol mixed solution based on certain calibration operations.The measurement error of liquid complex permittivity is reduced from 4.2% to 2% by obtaining the test data of two frequency points simultaneously.In addition,the structure size of the interdigital capacitor can be further adjusted to develop a multi-band resonant sensor to achieve accurate acquisition of the wide-band dielectric spectrum of the liquid.
BAO X, OCKET I, CRUPI G, et al. A Planar One-Port Microwave Microfluidic Sensor for Microliter Liquids Characterization [J]. IEEE Journal of Electromagnetics, RF and Microwaves in Medicine and Biology, 2018, 2(1): 10-17.
LI Q Q, WANG T Q, YU H Y, et al. Temperature Measurement of Fluid in a Tube Usinga Microwave Cylindrical Cavity Resonator Sensor [J]. Acta Metrologica Sinica, 2023, 44(5): 714-721.
WILTSHIRE B D, ZARIFI M H. 3-D printing microfluidic channels with embedded planar microwave resonators for RFID and liquid detection [J]. IEEE Microwave and Wireless Components Letters, 2018, 29(1): 65-67.
[11]
BAO X, OCKET I, BAO J, et al, Modeling of Coplanar Interdigital Capacitor for Microwave Microfluidic Application [J]. IEEE Transactions on Microwave Theory and Techniques, 2019, 67(7):2674-2683.
[12]
BAO X, ZHANG M, OCKET I, et al. Integration of Interdigitated Electrodes in Split-Ring Resonator for Detecting Liquid Mixtures [J]. IEEE Transactions on Microwave Theory and Techniques, 2020, 68(6): 2080-2089.
CHENG Q M, XU J D, WEI G, et al. Research on improvement of Quality Factor Measurement Method of microwave resonator [J]. Aeronautical Computing Technology, 2010, 40(1): 108-110.
[16]
宋勤睿. 基于微波平面传感器的液体介电常数测量方法 [D]. 大连: 大连理工大学, 2022.
[18]
MASHIMO S, UMEHARA T, REDLIN H. Structures of water and primary alcohol studied by microwave dielectric analyses [J]. The Journal of chemical physics, 1991, 95(9): 6257-6260.
SHI X Y, YIN B. Design of Miniaturized microwave sensor for dielectric constant measurement [J]. Electronic Devices, 2019, 46(3): 641-645.
BAO X, OCKET I, BAO J, et al. Broadband dielectric spectroscopy measurements of liquids combining interdigital capacitor and coplanar waveguide[C]//EUMA. 2017 47th European Microwave Conference, Nuremberg, Germany, 2017: 946-949.
ZHAO K S, WEI S X. New progress in the study of ordered aggregation systems of molecules by dielectric relaxation spectroscopy [J]. Progress in Natural Science, 2005(3): 3-10.
[15]
DU M, LI S, SHAO L, et al. A Double-Band Resonance Sensor for Complex Permittivity Characterization of Liquids[C]//MTT-S. 2023 IEEE MTT-S International Microwave Biomedical Conference (IMBioC). Leuven, Belgium, 2023: 181-183.
[17]
SATO T, CHIBA A, NOZAKI R. Hydrophobic hydration and molecular association in methanol-water mixtures studied by microwave dielectric analysis [J]. Journal of Chemical Physics, 2000(112): 2924-2932.
WANG K, ZHOU H J, TANG H J, et al. Research on Permittivity Measurement Sensor Based on Spilt-Ring Resonator Structure [J]. Chinese Journal of Sensors and Actuators, 2023, 36(5): 698-705.
[13]
EBRAHIMI A, SCOTT J, GHORBANI K. Ultrahigh-Sensitivity Microwave Sensor for Microfluidic Complex Permittivity Measurement [J]. IEEE Transactions on Microwave Theory and Techniques, 2019, 67(10): 4269-4277.