基于CRLH传输线漏波辐射的介电常数探测器的概念验证

M. J. Cadena, Omar Nova, A. Ávila
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引用次数: 0

摘要

提出了一种基于二维超材料的介电常数检测器,实现了复合左右传输线(CRLH)。利用CRLH线所显示的漏波辐射作为介电常数检测的工作原理。在FR4衬底上设计并制造了一种由数字间电极作为电容元件和短路短管作为感应元件组成的CRLH线。实施的CRLH线的S21参数测量是在空气和三种气体(二氧化碳(CO2),氮气(N2)和氧气(O2))存在的情况下进行的。三种气体相对于空气的S21测量值的差异被用作泄漏波辐射发生的证据。这种差异的量化可以检测到特定气体的存在。将S21测量值与已实现的常规传输线(右手传输线或RH传输线)的测量值作为参考进行比较。验证了CRLH线路的介电常数检测能力。结果表明,作为探测器接入线的两条相对湿度线对这种传感特性没有贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Proof of concept for a permittivity detector based on the leaky wave radiation of a CRLH transmission line
A permittivity detector based on a 2D metamaterial implemented as a composite right/left-handed (CRLH) transmission line is presented. The leaky wave radiation exhibited by the CRLH lines is used as the operational principle of permittivity detection. A CRLH line consisting of interdigital electrodes as capacitive elements and short-circuited stubs as inductive elements is designed and fabricated on FR4 substrate. S21 parameter measurements of the implemented CRLH line are performed in the presence of air and three gases: carbon dioxide (CO2), nitrogen (N2) and oxygen (O2). Differences in S21 measurements of the three gases with respect to air, are used as evidence of the occurrence of leaky wave radiation. Quantification of such differences allows detecting the presence of a particular gas. The S21 measurements are compared with those of an implemented conventional transmission line (right-handed or RH transmission line), used as reference. The permittivity sensing capacity of the CRLH line is demonstrated. It is shown that the two RH lines used as access lines to the detector do not contribute to this sensing property.
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