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.
Design of a Planar Sensor Based on Split-Ring Resonators for Non-Invasive Permittivity Measurement.
基于分裂环谐振器的平面传感器设计,用于非侵入式介电常数测量
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作者:Alibakhshikenari Mohammad, Virdee Bal S, Elwi Taha A, Lubangakene Innocent D, Jayanthi Renu K R, Al-Behadili Amer Abbood, Hassain Zaid A Abdul, Ali Syed Mansoor, Pau Giovanni, Livreri Patrizia, Aïssa Sonia
| 期刊: | Sensors | 影响因子: | 3.500 |
| 时间: | 2023 | 起止号: | 2023 Jun 2; 23(11):5306 |
| doi: | 10.3390/s23115306 | ||
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