The Regularization Technique in Modeling of the Plane E-Polarized EM Wave Scattering by Coplanar System of Electrically Conducting Flat Strips

Author:

Koshovy George I.1,Koshovy Andrii G.1

Affiliation:

1. Institute of Radio-Physics and Electronics, National Academy of Sciences in Ukraine, vul. Proskury 12, 61085 Kharkiv, Ukraine

Abstract

The integral equations technique has been successfully modified for studying the plane E-polarized electromagnetic wave scattering by multilevel coplanar systems of zero-thickness impedance strips. Reformulation of the scattering problem in the form of the second-kind regular integral equations has been realized on the base of the Carleman regularization technique. Two novel and original classes of specific Cantor functions have been presented and analyzed. Using new Cantor functions, it is easy to create a lot of non-classical orderings for specific multilevel coplanar strips systems. That sort of system can be useful for modeling irregular natural processes and zones in the future. Considerable attention was focused on the plane E-polarized electromagnetic wave scattering by sparsely filled coplanar systems of electrically narrow impedance strips. An explicit solution of the scattering problem has been obtained for such case of strips system.

Publisher

MDPI AG

Subject

Fluid Flow and Transfer Processes,Computer Science Applications,Process Chemistry and Technology,General Engineering,Instrumentation,General Materials Science

Reference17 articles.

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2. Colton, D., and Kress, R. (1983). Integral Equation Methods in Scattering Theory, John Wiley and Sons.

3. Atkinson, K.E. (1997). The Numerical Solution of Integral Equations of the Second Kind, Cambridge University Press.

4. Plane wave scattering from thin dielectric disk in free space: Generalized boundary conditions, regularizing Galerkin technique and whispering gallery mode resonances;Lucido;IET Microw. Antennas Propag.,2021

5. The plane H-polarized electromagnetic wave scattering by pre-fractal grating of impedance strips;Koshovy;Int. J. Microw. Wirel. Technol.,2020

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