Title :
Guaranteed-Convergence Method of Analysis of the Scattering by an Arbitrarily Oriented Zero-Thickness PEC Disk Buried in a Lossy Half-Space
Author :
Di Murro, Francesca ; Lucido, Mario ; Panariello, Gaetano ; Schettino, Fulvio
Author_Institution :
D.I.E.I., Univ. degli Studi di Cassino e del Lazio Meridionale, Cassino, Italy
Abstract :
In this paper, a guaranteed-convergence method for the accurate and efficient analysis of the electromagnetic scattering by an arbitrarily oriented zero-thickness perfectly electrically conducting (PEC) disk buried in a lossy half-space is presented. An electric field integral equation (EFIE) in the vector Hankel transform domain is obtained by expanding the unknown surface current density in cylindrical harmonics. A convergence of exponential type is achieved by means of Galerkin´s method with expansion functions reconstructing the expected physical behavior of the nth harmonic at the center and the edge of the disk. The obtained coefficient matrix can be quickly computed since its elements can be reviewed as the sum of single integrals efficiently evaluable by means of an analytical acceleration technique and double integrals of exponentially decaying functions.
Keywords :
Galerkin method; Hankel transforms; convergence of numerical methods; electric field integral equations; electromagnetic wave scattering; matrix algebra; vectors; EFIE; Galerkin method; analytical acceleration technique; arbitrarily oriented zero-thickness PEC disk; arbitrarily oriented zero-thickness perfectly electrically conducting disk; coefficient matrix; cylindrical harmonics; electric field integral equation; electromagnetic scattering analysis; expansion functions; exponential decaying functions; exponential type convergence; guaranteed-convergence method; lossy half-space; unknown surface current density; vector Hankel transform domain; Convergence; Current density; Electric fields; Harmonic analysis; Integral equations; Method of moments; Scattering; Disks; Galerkin’s method; Galerkin???s method; electromagnetic scattering;
Journal_Title :
Antennas and Propagation, IEEE Transactions on
DOI :
10.1109/TAP.2015.2438336