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首页> 外文期刊>Microwave and optical technology letters >Humidity sensing performance of defected ground structure-based microwave sensors coated with PMMA, PHEMA, and PVA
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Humidity sensing performance of defected ground structure-based microwave sensors coated with PMMA, PHEMA, and PVA

机译:耐缺陷地面结构的微波传感器湿度感应性能,涂有PMMA,PHEMA和PVA

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摘要

This article compares the humidity sensing performance of microwave sensors coated with a poly(methyl methacrylate), poly(2-hydroxyethyl methacrylate), or poly(vinyl alcohol) (PVA) polymer. A microwave sensor based on a modified interdigital-capacitor-shaped defected ground structure (IDCS-DGS) in a microstrip transmission line with enhanced permittivity sensitivity was designed on an RF-301 substrate with a thickness of 0.76 mm, which operate at a 1.5 GHz microwave frequency under unloaded conditions. One of the three different polymers was coated onto the IDCS-DGS of the microwave sensors at a thickness of 0.02 mm. The humidity sensing performance of the microwave sensors coated with each of the three polymers was measured by the shift in the resonant frequency and magnitude level of the transmission coefficient when relative humidity was varied from 40 to 90%, with increments of 10%, at a temperature of 25 degrees C. The experiment results show that the humidity sensing performance of the PVA-coated microwave sensor is the best among the three polymers.
机译:本文比较了涂有聚甲基丙烯酸甲酯、聚甲基丙烯酸甲酯或聚乙烯醇(PVA)聚合物的微波传感器的湿敏性能。在厚度为0.76mm的RF-301基片上,设计了一种基于改进的叉指电容形缺陷接地结构(IDCS-DGS)的微波传感器,该结构用于提高介电常数灵敏度的微带传输线,在空载条件下工作在1.5GHz微波频率下。三种不同聚合物中的一种以0.02 mm的厚度涂覆在微波传感器的IDCS-DGS上。当相对湿度在40%到90%之间变化时,通过共振频率和透射系数的量级水平的变化来测量涂有三种聚合物的微波传感器的湿度传感性能,增量为10%,实验结果表明,在三种聚合物中,PVA涂层微波传感器的湿敏性能最好。

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