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Design of a Planar Sensor Based on Split-Ring Resonators for Non-Invasive Permittivity Measurement

  • Mohammad Alibakhshikenari
  • , Bal S. Virdee
  • , Taha A. Elwi
  • , Innocent D. Lubangakene
  • , Renu K.R. Jayanthi
  • , Amer Abbood Al-Behadili
  • , Zaid A.Abdul Hassain
  • , Syed Mansoor Ali
  • , Giovanni Pau
  • , Patrizia Livreri
  • , Sonia Aïssa
  • Department of Signal Theory and Communications
  • Universidad Carlos III de Madrid
  • London Metropolitan University
  • Al-Ma'moon University College
  • International Applied and Theoretical Research Center (IATRC)
  • Mustansiriyah University
  • College of Sciences
  • Kore University
  • University of Palermo
  • INRS-Océanologie

Research output: Contribution to a Journal (Peer & Non Peer)Articlepeer-review

38 Citations (Scopus)

Abstract

The permittivity of a material is an important parameter to characterize the degree of polarization of a material and identify components and impurities. This paper presents a non-invasive measurement technique to characterize materials in terms of their permittivity based on a modified metamaterial unit-cell sensor. The sensor consists of a complementary split-ring resonator (C-SRR), but its fringe electric field is contained with a conductive shield to intensify the normal component of the electric field. It is shown that by tightly electromagnetically coupling opposite sides of the unit-cell sensor to the input/output microstrip feedlines, two distinct resonant modes are excited. Perturbation of the fundamental mode is exploited here for determining the permittivity of materials. The sensitivity of the modified metamaterial unit-cell sensor is enhanced four-fold by using it to construct a tri-composite split-ring resonator (TC-SRR). The measured results confirm that the proposed technique provides an accurate and inexpensive solution to determine the permittivity of materials.

Original languageEnglish
Article number5306
JournalSensors
Volume23
Issue number11
DOIs
Publication statusPublished - Jun 2023
Externally publishedYes

Keywords

  • complex permittivity
  • microstrip technology
  • sensor
  • split-ring resonator

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