Non-invasive Measurement of Complex permittivity using a Compact Planar Microwave Sensor

Remsha Moolat, Manoj Mani, M. Pezholil
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Abstract

This work describes the development of a compact planar microwave sensor for non-invasive complex permittivity measurement of liquids. The sensing element is a quarter wavelength stepped impedance resonator realized on an asymmetric coplanar stripline. To characterize the material, the sensor detects the resonance frequency and phase of the reflection coefficient. Numerical simulations were conducted for non-invasive and invasive measurements and mathematical relations are formulated for extracting the dielectric constant and loss tangent of the sample. The sensor is intended to operate at 5.6 GHz in free space. A prototype of the designed sensor is fabricated and tested with using a modest volume of test liquids as a proof of concept. The actual dielectric properties of the solution are measured using a commercially available dielectric probe. The extracted dielectric measurement acquired with the sensor are very similar to those obtained with the dielectric probe.
基于紧凑平面微波传感器的复介电常数无创测量
本工作描述了一种紧凑的平面微波传感器的发展,用于非侵入式复杂介电常数测量液体。传感元件是在非对称共面带状线上实现的四分之一波长阶跃阻抗谐振器。为了表征材料,传感器检测反射系数的共振频率和相位。对非侵入式测量和侵入式测量进行了数值模拟,建立了样品介电常数和损耗切线提取的数学关系。该传感器在自由空间的工作频率为5.6 GHz。设计的传感器的原型被制造出来,并使用适量的测试液体作为概念验证进行测试。溶液的实际介电特性是用市售的介电探针测量的。传感器所提取的介电测量值与介电探针所获得的介电测量值非常相似。
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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