A Low-Cost Microwave Microfluidic Sensor Based on Planar Ring Resonator

被引:7
作者
Jafari, Fahimeh [1 ]
Rad Malekshahi, Mazdak [1 ]
机构
[1] Razi Univ, Dept Elect Engn, Kermanshah 6714414971, Iran
关键词
Complex permittivity; dropping-based method; microfluidic sensor; predictive model; resonant frequency; COMPLEX PERMITTIVITY CHARACTERIZATION; DIELECTRIC RESONATOR; BINARY-MIXTURES;
D O I
10.1109/JSEN.2023.3301813
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this article, a low-cost and very high-sensitive microwave microfluidic sensor implemented by two ring resonators is proposed for liquid characterization. Applying the liquid samples to the sensor was done using a polyvinyl chloride (PVC) microfluidic channel and dropping-based method which causes a shift in the resonance frequency and quality factor related to the value of the liquid's complex permittivity. Several solvents were measured and a good agreement was achieved for simulations and experimental measurements. Also, ethanol-water mixtures were used for calibration and validation of a predictive model for the complex permittivity, which shows a maximum measurement error of 5.8%. A very high sensitivity of 0.7% using liquid volume of about 30 mu L was obtained which demonstrates the accuracy of characterization of the complex permittivity by using the proposed sensor. In comparison with previous designs, the proposed sensor has a compact size, simple design, and easy fabrication process and it is cost-effective to fabricate. Also, the proposed sensor can be used either with or without a microfluidic channel.
引用
收藏
页码:21070 / 21077
页数:8
相关论文
共 50 条
  • [21] A Planar Microwave Angular Displacement Sensor Based on Microstrip Line Loaded Split Ring Resonators
    Yan, Jingui
    Chen, Xinwei
    Ma, Runbo
    2024 INTERNATIONAL CONFERENCE ON MICROWAVE AND MILLIMETER WAVE TECHNOLOGY, ICMMT, 2024,
  • [22] Complementary Split-Ring Resonator-Loaded Microfluidic Ethanol Chemical Sensor
    Salim, Ahmed
    Lim, Sungjoon
    SENSORS, 2016, 16 (11):
  • [23] Determination of the Relative Permittivity and Loss Tangent of Liquid Samples Using a Miniature Low-Cost Microwave Sensor
    Olan-Nunez, Karen N.
    Murphy-Arteaga, Roberto S.
    Morales-Lovera, Hector N.
    2023 IEEE MTT-S LATIN AMERICA MICROWAVE CONFERENCE, LAMC, 2023, : 88 - 91
  • [24] A Flexible Microwave Sensor Based on Complementary Spiral Resonator for Material Dielectric Characterization
    Su, Lijuan
    Huang, Xin
    Guo, Wei
    Wu, Hao
    IEEE SENSORS JOURNAL, 2020, 20 (04) : 1893 - 1903
  • [25] Permittivity and Concentration Measurements Based on Coplanar Waveguide and Split Ring Resonator Sensor
    Lv, Benkun
    Yang, Xiaonan
    Zhang, Hanyue
    Peng, Wei
    Qi, Guochen
    Li, Shijiao
    Qiu, Jingjiang
    Zhang, Yudong
    Nie, Bangbang
    Wu, Xiao
    Xi, Rui
    Wang, Wen
    Wei, Ronghan
    IEEE SENSORS JOURNAL, 2024, 24 (04) : 5122 - 5131
  • [26] Low-Cost CSRR Based Sensor for Determination of Dielectric Constant of Liquid Samples
    Buragohain, Akash
    Mostako, Abu Tahir Talat
    Das, Gouree Shankar
    IEEE SENSORS JOURNAL, 2021, 21 (24) : 27450 - 27457
  • [27] A Microwave Ring-Resonator Sensor for Non-Invasive Assessment of Meat Aging
    Jilani, Muhammad Taha
    Wen, Wong Peng
    Cheong, Lee Yen
    Rehman, Muhammad Zaka Ur
    SENSORS, 2016, 16 (01)
  • [28] Deep Reinforcement Learning Based Optimization of Microwave Microfluidic Sensor
    Pan, Jia-Hao
    Wu, Wen-Jing
    Liu, Qi Qiang
    Zhao, Wen-Sheng
    Wang, Da-Wei
    Hu, Xiaoping
    Hu, Yue
    Wang, Jing
    Liu, Jun
    Sun, Lingling
    IEEE MICROWAVE AND WIRELESS TECHNOLOGY LETTERS, 2024, 34 (11): : 1309 - 1312
  • [29] Low-Cost Planar Coupled-Line Sensor for Permittivity Measurement of Low-Loss Dielectric Materials in a Wide Frequency Range
    Piekarz, Ilona
    Janisz, Konrad
    Sorocki, Jakub
    Wincza, Krzysztof
    Gruszczynski, Slawomir
    2017 CONFERENCE ON MICROWAVE TECHNIQUES (COMITE), 2017,
  • [30] A New Microwave Oscillator-Based Microfluidic Dielectric Sensor
    Tseng, Chao-Hsiung
    Pai, Chu-Hsuan
    Chang, Hsiu-Che
    IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, 2024, 72 (01) : 628 - 637