Study and investigation of harmonics resonance frequency for embedded composite right / left handed transmission line (CRLH-TL) array and its application in microstrip antenna design

Y. Madany, H. Elkamchouchi, Bishoy I. Halim
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引用次数: 1

Abstract

Metamaterials represent a new paradigm in electromagnetic science and technology. They have already leaded to many unprecedented microwave applications, which may be classified in three categories: guided-wave, radiated-wave and refracted-wave applications. Control and manipulation of electromagnetic waves is at the heart of many industries from wireless communication, Internet and optical data storage to imaging and displays. Progress in these technologies places challenging demands on material properties and therefore structured electromagnetic materials. Metamaterials are a special class of structured materials. In this paper, harmonics resonance frequency of embedded CRLH-TL array has been generated and introduced. The analysis and investigation are done by a commercial software. The good agreement between the theoretical expectation and the simulation results is observed. Finally, the application of the proposed CRLH-TL array was examined in microstrip antenna design. The proposed microstrip antenna structure has been fabricated and the measured S-parameters of the proposed structure can be analyzed with network analyzer to demonstrate the excellent performance and satisfy multiband frequencies using conventional single microstrip patch antenna.
嵌入式复合右/左手传输线(CRLH-TL)阵列谐波谐振频率及其在微带天线设计中的应用研究
超材料代表了电磁科学与技术的新范式。它们已经导致了许多前所未有的微波应用,这些应用可以分为三类:导波、辐射波和折射波应用。从无线通信、互联网、光学数据存储到成像和显示,电磁波的控制和操纵是许多行业的核心。这些技术的进步对材料性能和结构电磁材料提出了挑战性的要求。超材料是一类特殊的结构材料。本文对嵌入式CRLH-TL阵列的谐波谐振频率进行了生成和介绍。分析和调查是由商业软件完成的。理论预测与仿真结果吻合较好。最后,对所提出的CRLH-TL阵列在微带天线设计中的应用进行了验证。制作了该微带天线结构,并通过网络分析仪对该结构的s参数测量结果进行了分析,证明了该结构具有优良的性能,能够满足传统的单微带贴片天线的多频带频率要求。
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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