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METAMATERIAL-INSPIRED MICROWAVE SENSOR FOR MEASUREMENT OF COMPLEX PERMITTIVITY OF MATERIALS

机译:用于材料复介电常数测量的启发式微波传感器

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This article presents the design and development of a metamaterial inspired planar microwave sensor for the measurement of complex permittivity of the solid and liquid sample under test (SUT). A hexagonal complementary split ring resonator (CSSR) is etched on the ground plane of a 50 Omega microstrip line, which is excited by the electric field component normal to the ground plane. The proposed hexagonal sensor possesses a good sensitivity, and the SUT placed over the CSSR perturbs the electric field associated with the CSRR giving rise to a change in the resonance frequency and peak attenuation of the transmission coefficient under loaded condition. An empirical relation between sensor resonance characteristics and the complex permittivity of the SUT is derived to determine the complex permittivity of the SUT. The designed sensor is fabricated on an FR4 substrate and is experimentally validated for various standard solid samples and hazardous chemical liquids. The proposed sensor is working in the frequency range of 5.3-8.2 GHz and is capable of measuring a number of samples with their dielectric properties varying over a wide range. (C) 2016 Wiley Periodicals, Inc.
机译:本文介绍了一种由超材料激发的平面微波传感器的设计和开发,该传感器用于测量被测固体和液体样品(SUT)的复介电常数。六边形互补开口环谐振器(CSSR)刻蚀在50Ω微带线的接地平面上,该平面由垂直于接地平面的电场分量激发。所提出的六角形传感器具有良好的灵敏度,并且放置在CSSR上的SUT扰动了与CSRR相关的电场,从而在负载条件下引起谐振频率的变化和传输系数的峰值衰减。得出传感器谐振特性和SUT的复介电常数之间的经验关系,以确定SUT的复介电常数。设计的传感器在FR4基板上制造,并通过了各种标准固体样品和危险化学液体的实验验证。拟议中的传感器工作在5.3-8.2 GHz的频率范围内,并能够测量介电特性在很宽范围内变化的许多样品。 (C)2016威利期刊公司

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