Behaviour of bow-tie antenna under the influence of metamaterials and genetic algorithm: Design and modelling of bow-tie antenna with EBG structures and genetic algorithm

B. R. Behera
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Abstract

In this paper, author has showcased the behaviour of Bow-Tie antenna with the presence of EBG structures in form of SSRR as the constituent part of metamaterials. These SSRR is directly etched in the ground plane without affecting its radiating patch. For the design purpose, FR-4 substrate is used with the epsilon value of 4.3 and thickness of 1.6 mm. With this, Bow-Tie antenna is scheduled to cover three resonating bands i.e. S-Band, C-Band and X-Band respectively. In order to justify parametric optimization, genetic algorithm is implemented out, which aimed to enhance its functionalities to the next level. Moreover ultimate result is to cite for the muti-band performances. MMIC Analysis in terms of L-C matching is carried with the help of combinations of distributed lumped elements. Not only it has strengthened the functioning of prototypes with achievement of better coverage of applications and improved gains as for a wireless communication domain.
超材料和遗传算法影响下的领结天线行为:基于EBG结构和遗传算法的领结天线设计与建模
在本文中,作者展示了以SSRR形式存在的EBG结构作为超材料组成部分的Bow-Tie天线的行为。这些SSRR直接蚀刻在地平面上,而不影响其辐射片。在设计中,采用FR-4基板,epsilon值为4.3,厚度为1.6 mm。因此,Bow-Tie天线计划分别覆盖s波段、c波段和x波段三个谐振波段。为了证明参数优化是合理的,实现了遗传算法,旨在将其功能提升到一个新的水平。此外,最终结果是引用了多波段的表演。利用分布集总元素的组合进行L-C匹配的MMIC分析。它不仅加强了原型的功能,实现了更好的应用覆盖范围,并提高了无线通信领域的收益。
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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