Electromagnetic wave scattering by a smooth imperfectly conducting cylindrical obstacle

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info:eu-repo/semantics/closedAccess

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A numerically efficient method for investigation of two-dimensional (2D) boundary value problem of electromagnetic wave diffraction in longitudinal direction imperfectly conductive cylinder of arbitrary smooth cross section was suggested. The method was based on generalization of analytical regularization method. Several qualitatively different cases were also considered, which could be qualified as regular perturbation of Neumann boundary value problem (BVP). The initial boundary value problem was reduced to a few different algebraic systems in l<inf>2</inf> of the kind (I+H)x=b. © 2008 Elsevier B.V., All rights reserved.

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Conference Proceedings - 10th International Conference on Mathematical Methods in Electromagnetic Theory, MMET'04 -- Dniepropetrovsk -- 64278

Anahtar Kelimeler

Boundary conditions, Boundary value problems, Electric impedance, Electromagnetic wave diffraction, Integrodifferential equations, Mathematical operators, Mathematical transformations, Matrix algebra, Numerical methods, Parameter estimation, Perturbation techniques, Vectors, Conductive cylinders, Normalized functions, Obstacle's surface, Scattered fields, Electromagnetic wave scattering

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Mathematical Methods in Electromagnetic Theory, MMET, Conference Proceedings

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