Microwave waveguide polarizer for satellite communication antennas with circular polarization

Pub Date : 2022-07-18 DOI:10.15407/knit2022.03.043
S. Piltyay, А. Bulashenko, А. V. Polishchuk, О. V. Bulashenko
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Abstract

The volumes of information transmitted in modern satellite telecommunication systems are constantly increasing. Antennas with signal polarization processing, which is performed by polarizers, are the fundamental elements of such systems. Therefore, the development of methods for the analysis of new polarizers is an important problem. From a technological point of view, polarizers based on waveguides with irises are the simplest. Analysis and optimization of electromagnetic characteristics of a polarizer based on a square waveguide with irises are the goals of the presented research. To solve this optimization problem, we have created a new mathematical model, which allows investigating the influence of the design parameters of the polarizer on its electromagnetic characteristics. A mathematical model of the waveguide polarizer with irises was created by the method of decomposition using wave transmission and scattering matrices. Besides, the new mathematical model takes into account the thickness of the irises using their equivalent T- and П-shaped substitution circuits. The general wave scattering matrix is the basis of a new mathematical model of a waveguide polarizer. This matrix was determined using the theory of microwave circuits. The main characteristics of the waveguide polarizer were determined through the elements of this matrix. Here, we perform the optimization of the polarizer characteristics in the Ku-band 10.7–12.8 GHz. The developed new mathematical model of a waveguide polarizer with irises makes it possible to take into account the heights of the irises, distances between them and their thickness. The new mathematical model determines the electromagnetic characteristics of the polarizer in a simpler and faster way compared to the finite integration technique, which is often used for the analysis of microwave devices for various purposes
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圆极化卫星通信天线用微波波导偏振器
现代卫星通信系统传输的信息量在不断增加。天线的信号极化处理,这是由偏振器执行,是这种系统的基本要素。因此,发展新的偏振光分析方法是一个重要的问题。从技术的角度来看,基于带虹膜的波导的偏振器是最简单的。本文的研究目标是分析和优化带虹膜的方形波导偏振器的电磁特性。为了解决这一优化问题,我们建立了一个新的数学模型,可以研究偏振器的设计参数对其电磁特性的影响。采用透射矩阵和散射矩阵分解的方法,建立了带虹膜波导偏振器的数学模型。此外,新的数学模型使用等效的T-和П-shaped替代电路考虑了虹膜的厚度。一般波散射矩阵是建立波导偏振器数学模型的基础。该矩阵是用微波电路理论确定的。通过该矩阵的元素确定了波导偏振器的主要特性。在此,我们对ku波段10.7-12.8 GHz的偏振器特性进行了优化。本文提出了一种新的带虹膜波导偏振器的数学模型,可以考虑虹膜的高度、间距和厚度。与有限积分技术相比,新的数学模型以更简单和更快的方式确定偏振器的电磁特性,有限积分技术通常用于各种用途的微波器件的分析
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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