Proceedings of the 3rd International Multi-Disciplinary Conference: “Integrated Sciences and Technologies”, IMDC-IST 2023, 25-27 October 2023, Yola, Nigeria

Research Article

Planer Microwave Liquid Sensor ‎Based on Meta-material ‎Complementary Split Ring ‎Resonator

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  • @INPROCEEDINGS{10.4108/eai.25-10-2023.2348739,
        author={Said  Mosbah and Djamel  Sayad and Samira  Mekki and Hanane  Bendjadi and Issa  Elfergani and Mohamed Lamine Bouknia and Rami  ‎Zegadi and Jonathan  Rodriguez and Merih  Palandoken and Chemseddine  Zebiri},
        title={Planer Microwave Liquid Sensor ‎Based on Meta-material ‎Complementary Split Ring ‎Resonator},
        proceedings={Proceedings of the 3rd International Multi-Disciplinary Conference: “Integrated Sciences and Technologies”, IMDC-IST 2023, 25-27 October 2023, Yola, Nigeria},
        publisher={EAI},
        proceedings_a={IMDC-IST},
        year={2024},
        month={8},
        keywords={metamaterial complementary split ring resonator microwave liquid sensor},
        doi={10.4108/eai.25-10-2023.2348739}
    }
    
  • Said Mosbah
    Djamel Sayad
    Samira Mekki
    Hanane Bendjadi
    Issa Elfergani
    Mohamed Lamine Bouknia
    Rami ‎Zegadi
    Jonathan Rodriguez
    Merih Palandoken
    Chemseddine Zebiri
    Year: 2024
    Planer Microwave Liquid Sensor ‎Based on Meta-material ‎Complementary Split Ring ‎Resonator
    IMDC-IST
    EAI
    DOI: 10.4108/eai.25-10-2023.2348739
Said Mosbah1,*, Djamel Sayad1, Samira Mekki1, Hanane Bendjadi1, Issa Elfergani2, Mohamed Lamine Bouknia1, Rami ‎Zegadi1, Jonathan Rodriguez3, Merih Palandoken4, Chemseddine Zebiri1
  • 1: Dept. of Electronics. ‎University of Ferhat Abbas, Setif -1-, 19000 Setif, Algeria
  • 2: Instituto de Telecomunicações, Campus Universitário de Santiago 3810193 Aveiro, Portugal; Faculty of Engineering and Informatics, University of Bradford, Bradford, UK
  • 3: Instituto de Telecomunicações, Aveiro, Portugal
  • 4: Izmir Katip Celebi University, ‎Izmir
*Contact email: said.mosbah@univ-setif.dz

Abstract

This paper introduces a microwave sensor utilizing metamaterials designed for liquid characterization. It is a complementary split ring resonator (CSRR). The liquid samples are placed inside a glass tube. The interaction of electromagnetic between the resonator and the liquid to be tested modifies the resonance frequency, which changes for each complex permittivity of different samples. The proposed sensor is optimized to have consistent quality factor and a high sensitivity using the HFSS software. The measurement results are used for the validation of these results.