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      Mathematical Model of a Square Waveguide Polarizer with Diaphragms

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          Abstract

          Abstract The development of new mathematical model for guide polarization converter with diaphragms was carried out in the research by the method of wave matrices. In addition, numerical modeling of the performance of a polarizer with diaphragms is made by simulating the propagation of the fundamental modes with perpendicular linear polarizations. The wave matrix model was obtained by splitting the polarizer into separate structural elements. Each element was described by its own wave transmission matrices. As a result, a general wave scattering matrix was formed. Based on the elements this matrix the electromagnetic characteristics of the considered polarizer were obtained theoretically. In particular, complex reflection and transmission coefficients were calculated. Their modules and phases were analyzed in the frequency interval 10.7-12.8 GHz. To check the correctness of the obtained results an independent numerical simulation was carried out applying the finite element methodology in the frequency interval. The results of both approaches are in good agreement. The engineered converter of polarization with four diaphragms provides a reflection coefficient modulus of less than 0.14 and a transfer coefficient modulus of more than 0.99 for two orthogonal types of polarizations. As a result, a rigorous mathematical method was developed to analyze the elements of the scattering matrix of a waveguide polarizer with diaphragms. It can be used for the development of new broadband waveguide polarizers and waveguide filters based on diaphragm elements.

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          Most cited references57

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          Microwave Engineering

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            Polarization in electromagnetic systems

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              Microwave and RF Engineering

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                Author and article information

                Journal
                jmoea
                Journal of Microwaves, Optoelectronics and Electromagnetic Applications
                J. Microw. Optoelectron. Electromagn. Appl.
                Sociedade Brasileira de Microondas e Optoeletrônica e Sociedade Brasileira de Eletromagnetismo (São Caetano do Sul, SP, Brazil )
                2179-1074
                December 2021
                : 20
                : 4
                : 883-895
                Affiliations
                [2] Shostka orgnameProfessional College of Sumy State University orgdiv1Electromechanical Department of Ivan Kozhedub Shostka Ukraine ol_bulashenko@ 123456ukr.net
                [1] Kyiv orgnameNational Technical University of Ukraine orgdiv1Igor Sikorsky Kyiv Polytechnic Institute orgdiv2Department of Radio Engineering Ukraine a.bulashenko@ 123456kpi.ua
                Article
                S2179-10742021000400883 S2179-1074(21)02000400883
                10.1590/2179-10742021v20i41368
                68cb0594-831a-4ef2-b480-387942f58c75

                This work is licensed under a Creative Commons Attribution 4.0 International License.

                History
                : 23 May 2021
                : 23 September 2021
                Page count
                Figures: 0, Tables: 0, Equations: 0, References: 96, Pages: 13
                Product

                SciELO Brazil

                Categories
                Articles

                reflection coefficient,transmission coefficient,wave matrix,Electromagnetic simulation,microwave passive devices,waveguide components,polarization,waveguide polarizer,diaphragm polarizer

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