DocumentCode
244994
Title
Regularization of the 2D TE-EFIE for homogeneous objects discretized by the Method of Moments with discontinuous basis functions
Author
Sekulic, Ivan ; Ubeda, Eduard ; Rius, J.M. ; Heldring, Alex
Author_Institution
Dept. of Signal Theor. & Commun., Univ. Politec. de Catalunya, Barcelona, Spain
fYear
2014
fDate
3-8 Aug. 2014
Firstpage
500
Lastpage
502
Abstract
The discretization of the Electric-Field Integral Equation (EFIE) by the Method of Moments (MoM) for a transversal electric (TE) illuminating wave impinging on an infinitely long cylinder (2D-object) is traditionally carried out with continuous piecewise linear basis functions. In this paper, we present a novel discretization of the TE-EFIE formulation for the scattering analysis of homogeneous, perfectly conducting 2D-objects based on the expansion of the currents around the line-boundary through discontinuous piecewise linear or piecewise constant basis functions. We show for several infinitely long cylinders, with smooth or sharp-edged sections, the good accuracy of the proposed approach in the computation of far-field and near-field quantities, such as RCS and currents, with respect to the observed accuracy in conventional continuous piecewise linear discretizations.
Keywords
electric field integral equations; electromagnetic wave scattering; method of moments; 2D TE-EFIE regularization; 2D-object; continuous piecewise linear basis functions; continuous piecewise linear discretizations; discontinuous basis functions; electric-field integral equation discretization; homogeneous objects; homogeneous scattering analysis; infinitely long cylinder; method of moments; transversal electric illuminating wave; Accuracy; Electromagnetic scattering; Electronic mail; Integral equations; Method of moments; Surface impedance; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetics in Advanced Applications (ICEAA), 2014 International Conference on
Conference_Location
Palm Beach
Print_ISBN
978-1-4799-7325-5
Type
conf
DOI
10.1109/ICEAA.2014.6903906
Filename
6903906
Link To Document