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Metamaterial Based Sensor Using Fractal Hilbert Structure for Liquid Characterization

AbdulSattar, Rusul Khalid; Alibakhshikenari, Mohammad; Elwi, Taha A.; Kouhalvandi, Lida; Hassain, Zaid A. Abdul; Virdee, Bal S.; Soruri, Mohammad; Tokan, Nurhan Türker; Parchin, Naser Ojaroudi; See, Chan Hwang; Livreri, Patrizia; Dayoub, Iyad; Aïssa, Sonia; Limiti, Ernesto

Authors

Rusul Khalid AbdulSattar

Mohammad Alibakhshikenari

Taha A. Elwi

Lida Kouhalvandi

Zaid A. Abdul Hassain

Bal S. Virdee

Mohammad Soruri

Nurhan Türker Tokan

Patrizia Livreri

Iyad Dayoub

Sonia Aïssa

Ernesto Limiti



Abstract

In this work, a simple and efficient approach is presented to design a metamaterial based sensitive sensor for liquid characterization. The proposed sensor based on the Hilbert structure has a compacted size of 40×60×1.6mm3. The Hilbert curve is used to enhance the sensitivity of the sensor by increasing the interaction area with the sample tested. The simulation studies are carried out by using the Computer Simulation Technology (CST) Microwave Studio. The resonant frequency of the proposed sensor is about 0.46 GHz. The resonant frequency has shifted approximately 30 MHz after the receptacle is printed on the sensor surface. The proposed sensor has successfully detected different samples of liquids. The variations of the resonant frequency, scattering parameters, bandwidth and quality factor of different samples are discussed.

Presentation Conference Type Conference Paper (Published)
Conference Name 2023 International Conference on Electromagnetics in Advanced Applications (ICEAA)
Start Date Oct 9, 2023
End Date Oct 13, 2023
Online Publication Date Oct 31, 2023
Publication Date 2023
Deposit Date Apr 5, 2024
Publicly Available Date Apr 5, 2024
Publisher Institute of Electrical and Electronics Engineers
Series ISSN 2766-2284
Book Title 2023 International Conference on Electromagnetics in Advanced Applications (ICEAA)
DOI https://doi.org/10.1109/iceaa57318.2023.10297837
Keywords Metamaterial, Hilbert, fractal, receptacle, liquid characterization
Public URL http://researchrepository.napier.ac.uk/Output/3586902

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