Gain Enhancement of Dual-Band Microstrip - Fed Antenna with complementary split ring resonators and rectangular slots embedded in Patch for Wireless Applications using Metamaterial Cell-Based Superstrate

A. K. Choudhary, Sujit Barman, T. Moyra, Anjan Debnath, Anirban Bhattacharjee
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Abstract

In this paper, a simple design of dual-band microstrip patch antenna with complementary split ring resonator (CSRR) and rectangular slots are presented with Superstrate. Highly effective and a simple dual band antenna response can be obtained by placing a single CSRR unit cell on the patch of the conventional microstrip patch antenna along with the etching of two rectangular slots. The proposed Antenna has good performance at both the frequencies. The conventional patch initially deigned to operate at 10 GHz is tuned to operate at two resonant frequencies at 9.56 GHz and 19.48 GHz, which can be significantly useful for wireless applications. And the realized gain obtained at 9.56 GHz and 19.48 GHz using high frequency structure simulator (HFSS – 15) simulations are 6.09 dB and 8.49 dB. In this paper CSRR along with two rectangular slots are responsible for second band and superstrate is responsible for enhancing the gain of the antenna. The metamaterial superstrate layer consists of (5 × 5) array of split ring resonators placed on the top of the substrate. The negative effective permeability is due to the nresence of snlit ring resonators.
基于超材料单元的贴片中嵌入互补分环谐振器和矩形槽的双频微带馈电天线增益增强
本文提出了一种基于superstrata的互补裂环谐振器(CSRR)和矩形槽的双频微带贴片天线的简单设计。通过在传统微带贴片天线的贴片上放置单个CSRR单元,并蚀刻两个矩形槽,可以获得高效且简单的双频天线响应。该天线在两个频率下都具有良好的性能。传统贴片最初设计的工作频率为10 GHz,经过调整后可以在9.56 GHz和19.48 GHz两个谐振频率下工作,这对无线应用非常有用。高频结构模拟器(HFSS - 15)在9.56 GHz和19.48 GHz频段的实现增益分别为6.09 dB和8.49 dB。在本文中,CSRR和两个矩形槽负责第二波段,上片负责提高天线的增益。超材料层由放置在衬底顶部的(5 × 5)分裂环谐振器阵列组成。负的有效磁导率是由于环形谐振器的存在。
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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