Axial ratio improvement of circular polarized dielectric resonator antennas with dual-point feeds

S. Ogurtsov, S. Koziel, A. Bekasiewicz
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引用次数: 2

Abstract

A novel approach to improve axial ratio (AR) of circular polarized (CP) dielectric resonator antennas (DRA) excited with dual-point feeds is presented. It is applicable to DRAs with different cross sections (e.g., square, circular) which are excited though two inputs having a 90-degree angular separation. The approach comprises two major stages. First, a complex excitation at the inputs of a DRA of interest, resulting in the AR of the value of one in the broadside radiation direction at the operation frequency, is determined. This excitation is calculated using the proposed closed-form formulas processing the simulated far-fields of the DRA excited with only one input. Furthermore, it is shown that a certain rigorously computed excitation of unequal amplitudes and 90-degree phase shift may be sufficient - from practical point of view - to ensure high-quality CP far-field for a DRA of interest. Second, the computed excitations serve as design requirements for branch-line couplers feeding the DRA. Numerical examples illustrate our approach.
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双馈圆极化介质谐振器天线轴比的改进
提出了一种提高双馈激励圆极化介质谐振器天线轴向比的新方法。它适用于具有不同横截面(例如,正方形,圆形)的dra,这些dra通过具有90度角分离的两个输入进行激励。该方法包括两个主要阶段。首先,在感兴趣的DRA的输入处确定一个复杂激励,导致在工作频率下宽侧辐射方向上的AR值为1。利用所提出的封闭公式对单输入励磁DRA远场模拟进行了计算。此外,从实际的角度来看,一定的严格计算的不等振幅和90度相移的激励可能足以确保对感兴趣的DRA的高质量CP远场。其次,计算的激励作为分支线耦合器馈送DRA的设计要求。数值例子说明了我们的方法。
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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