Analysis of concentric split ring square reflectarray element for bandwidth enhancement

S. H. Yusop, N. Misran, M. Islam, M. Ismail
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引用次数: 7

Abstract

An analysis of phase variation and phase range of concentric split ring square element for broadband reflectarray antenna is presented in this paper. This element is the combination of a single square element and a ring element where the square element is the modification of the conventional annular ring element which instead of using annul as the hole, this new idea presents a square as the hole in the ring. This will varies the current distribution in the element which will then improves the performance of the bandwidth. The analysis and the design of this reflectarray element is presented based on variable size which operates at the first resonant frequency of 13.44 GHz and at the second resonant frequency of 18.36 GHz. The design procedure and critical parameters consist of phase range and phase slope (or variation) are also discussed. Modifying the current distribution of square ring element, leads to a less steep phase variation and also enhancement on the bandwidth performance (up to 67.6%). The practical phase range is achieved through the use of RF35 as the substrate with the dielectric constant of 3.54 and the thickness of 1.524 mm. CST Microstripes is used as the software tool to get the simulation results.
用于增强带宽的同心分裂环方形反射单元分析
本文分析了宽带反射天线同轴分环方形元件的相位变化和相位范围。该单元是单个方形单元和环形单元的组合,其中方形单元是对传统环形单元的改进,而不是使用环作为孔,这种新想法将正方形作为环中的孔。这将改变元件中的电流分布,从而提高带宽的性能。提出了一种工作在第一谐振频率13.44 GHz和第二谐振频率18.36 GHz的变尺寸反射单元的分析和设计方法。文中还讨论了相位范围和相位斜率(或变化)的设计过程和关键参数。通过改变方环元件的电流分布,相位变化幅度减小,带宽性能提高67.6%。采用RF35作为衬底,介电常数为3.54,厚度为1.524 mm,实现了实际相位范围。采用CST Microstripes作为软件工具,得到了仿真结果。
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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