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Electromagnetic Performance Analysis...
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Vandana, S.
Electromagnetic Performance Analysis of Graded Dielectric Inhomogeneous Radomes
Record Type:
Language materials, printed : Monograph/item
Title/Author:
Electromagnetic Performance Analysis of Graded Dielectric Inhomogeneous Radomes/ by P. Mahima, M. Suprava, S. Vandana, Mohammed P.S. Yazeen, Raveendranath U. Nair.
Author:
Mahima, P.
other author:
Suprava, M.
Description:
XXI, 50 p. 29 illus., 25 illus. in color.online resource. :
Contained By:
Springer Nature eBook
Subject:
Microwaves. -
Online resource:
https://doi.org/10.1007/978-981-10-7832-3
ISBN:
9789811078323
Electromagnetic Performance Analysis of Graded Dielectric Inhomogeneous Radomes
Mahima, P.
Electromagnetic Performance Analysis of Graded Dielectric Inhomogeneous Radomes
[electronic resource] /by P. Mahima, M. Suprava, S. Vandana, Mohammed P.S. Yazeen, Raveendranath U. Nair. - 1st ed. 2018. - XXI, 50 p. 29 illus., 25 illus. in color.online resource. - SpringerBriefs in Applied Sciences and Technology,2191-530X. - SpringerBriefs in Applied Sciences and Technology,.
List of Figures -- List of Abbreviations -- List of Symbols -- Preface -- Acknowledgments -- 1. Introduction -- 2. Radome Wall Configurations -- 3. EM Characteristics of Planar Slab Model of Graded Dielectric Inhomogeneous Planar Structure -- 4. EM Design Aspects -- 5. EM Performance Analysis -- 6. Summary -- References -- Index. .
This book reports on a new radome wall configuration based on an inhomogeneous planar layer, which overcomes current fabrication constraints in radome design and yields improved electromagnetic (EM) characteristics. The book also includes a detailed description of radomes and antenna-radome interaction studies for different radome wall configurations. The radome wall was designed using the equivalent transmission line method (EQTLM), since it requires less computational speed and provides accurate results. In order to substantiate the accuracy of the results obtained using EQTLM, the simulated results based on full wave methods like CST Microwave Studio Suite are also included. The EM performance analysis of the antenna-radome system for two radome shapes, tangent ogive (for airborne applications) and hemispherical (for ground-based applications), was performed using Geometric Optics Method in conjunction with the Aperture Integration Method. To show the efficacy of the new design, a comparison of performance characteristics between the novel radome and conventional wall configurations is also included. Lastly, it presents antenna-radome interaction studies for various aperture distributions. The book offers a unique resource for all researchers working in the area of microwave radomes.
ISBN: 9789811078323
Standard No.: 10.1007/978-981-10-7832-3doiSubjects--Topical Terms:
636639
Microwaves.
LC Class. No.: TK7876-7876.42
Dewey Class. No.: 621.3
Electromagnetic Performance Analysis of Graded Dielectric Inhomogeneous Radomes
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List of Figures -- List of Abbreviations -- List of Symbols -- Preface -- Acknowledgments -- 1. Introduction -- 2. Radome Wall Configurations -- 3. EM Characteristics of Planar Slab Model of Graded Dielectric Inhomogeneous Planar Structure -- 4. EM Design Aspects -- 5. EM Performance Analysis -- 6. Summary -- References -- Index. .
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This book reports on a new radome wall configuration based on an inhomogeneous planar layer, which overcomes current fabrication constraints in radome design and yields improved electromagnetic (EM) characteristics. The book also includes a detailed description of radomes and antenna-radome interaction studies for different radome wall configurations. The radome wall was designed using the equivalent transmission line method (EQTLM), since it requires less computational speed and provides accurate results. In order to substantiate the accuracy of the results obtained using EQTLM, the simulated results based on full wave methods like CST Microwave Studio Suite are also included. The EM performance analysis of the antenna-radome system for two radome shapes, tangent ogive (for airborne applications) and hemispherical (for ground-based applications), was performed using Geometric Optics Method in conjunction with the Aperture Integration Method. To show the efficacy of the new design, a comparison of performance characteristics between the novel radome and conventional wall configurations is also included. Lastly, it presents antenna-radome interaction studies for various aperture distributions. The book offers a unique resource for all researchers working in the area of microwave radomes.
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