Square Waveguide Polarizer with Diagonally Located Irises for Ka-Band Antenna Systems

IF 0.8 Q4 ENGINEERING, ELECTRICAL & ELECTRONIC Advanced Electromagnetics Pub Date : 2021-10-26 DOI:10.7716/aem.v10i3.1780
S. Piltyay
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引用次数: 9

Abstract

This article presents the results of development and optimization of a new square waveguide polarizer with diagonally located square irises. The application of suggested geometrical modification of irises form and location instead of a standard wall-to-wall irises configuration allows to exclude 45-degree twists between wideband waveguide polarizer and orthomode transducer of a dual-polarized antenna feed system. In addition, a waveguide polarizer and polarization duplexer can be manufactured by milling technology as two single details, which makes the proposed engineering solution reliable, simple for simulation, development and application. Suggested new polarizer design was developed for the satellite operating Ka-band. It contains 12 irises, which are symmetrically located in the diagonal corners of a square waveguide. Obtained optimal polarization converter provides excellent matching and polarization performance. The maximum level of VSWR is less than 1.04 for both orthogonal polarizations. Values of cross-polarization discrimination are higher than 32 dB in the operating Ka-band. Developed square waveguide polarizer with diagonally located irises can be applied in modern wideband satellite antennas.
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用于ka波段天线系统的对角定位虹膜方形波导偏振器
本文介绍了一种新型斜置方形光阑的方形波导偏振器的研制和优化结果。应用建议的几何修改虹膜形式和位置,而不是标准的墙对墙虹膜配置,可以排除宽带波导偏振器和双极化天线馈送系统的正交换能器之间的45度扭曲。此外,波导偏振器和偏振双工器可以通过铣削技术作为两个单一的细节来制造,这使得所提出的工程解决方案可靠,易于仿真、开发和应用。提出了一种适用于ka波段卫星的新型偏光片设计方案。它包含12个虹膜,对称地位于方形波导的对角角上。得到的最优极化变换器具有良好的匹配和极化性能。两个正交偏振方向的最大驻波比均小于1.04。在工作ka波段,交叉极化鉴别值大于32 dB。所研制的对角定位虹膜的方波导偏振器可以应用于现代宽带卫星天线。
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来源期刊
Advanced Electromagnetics
Advanced Electromagnetics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
2.40
自引率
12.50%
发文量
33
审稿时长
10 weeks
期刊介绍: Advanced Electromagnetics, is electronic peer-reviewed open access journal that publishes original research articles as well as review articles in all areas of electromagnetic science and engineering. The aim of the journal is to become a premier open access source of high quality research that spans the entire broad field of electromagnetics from classic to quantum electrodynamics.
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