Microwave Planar Sensor Based On a Single Octagonal Split Ring Resonator for Permittivity Sensing

Adel Y. I. Ashyap, S. Dahlan, Z. Abidin, Yee Sk, M. R. Kamarudin, H. Majid, J. A. Sukor, N. Al-Fadhali, S. Alamri
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Abstract

In this article, a microwave planar sensor based on a single octagonal split-ring resonator is presented, which can work in the millimeter-wave band. The usefulness of the millimeter-wave band can offer high sensitivity to liquids and low conductivity to impurities in the material under test (MUT). The microwave planar sensor is composed of a single octagonal-shaped connected by two strip lines on the top of the substrate and a full ground plane at the back. It has a length of 22 mm and a width of 10 mm. The purposed of the microwave planar sensor is to detect the change of the dielectric constant value of the liquid solution. The numerical results demonstrate that when a MUT with a higher permittivity value is placed in the gap, the S21 response shifts to a lower frequency band. Hence, the presented microwave planar sensor based on a single octagon-shaped split-ring resonator can provide a feasible approach with excellent sensitivity and can detect the permittivity of several liquid solutions in the millimeter-wave band.
基于单八角形分裂环谐振腔的微波平面传感器的介电常数传感
本文提出了一种工作在毫米波波段的基于单八角形分环谐振腔的微波平面传感器。毫米波波段的实用性可以提供对液体的高灵敏度和对被测材料中杂质的低导电性(MUT)。微波平面传感器由基片顶部由两条带状线连接的单个八角形和背面的完整接地面组成。长22毫米,宽10毫米。微波平面传感器的目的是检测液体溶液介电常数值的变化。数值结果表明,当介电常数值较高的MUT放置在间隙中时,S21响应会向较低的频段移动。因此,基于单个八角形裂环谐振腔的微波平面传感器提供了一种可行的方法,具有良好的灵敏度,可以在毫米波波段检测多种液体溶液的介电常数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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