DocumentCode :
2036972
Title :
Versatile facet-oriented discretization of the electric-field integral equation
Author :
Ubeda, Eduard ; Sekulic, Ivan ; Rius, Juan ; Heldring, Alex
Author_Institution :
Antenna Lab, Dept. of Signal Theory and Communications, Universtat Politecnica de Catalunya, Spain
fYear :
2015
fDate :
1-4 July 2015
Firstpage :
1
Lastpage :
2
Abstract :
Traditional method-of-moment implementations of the electric-field integral equation (EFIE) are based on sets of divergence-conforming basis functions, such as the loworder Rao-Wilton-Glisson (RWG) set, which arise from imposing normal continuity in the expanded current across the edges arising from the triangulation around the boundary surface. These schemes are edge-oriented and become well-suited for the analysis of conformal meshings, where pairs of adjacent triangles share common edges. However, they cannot be applied to nonconformal triangulations, arising from the interconnection of independent meshings, for example in the modular modelling of composite objects, because adjacent triangles may not have common matching edges. In this paper, we present several facetoriented implementations of the EFIE that allow the robust and versatile analysis of such objects. Two schemes arise from testing the fields over a set of tetrahedral or wedge elements attached to the boundary surface, inside the conductor. Another scheme, ???tangential-normal???, derives from testing the fields over pairs of adjacent triangles such that one triangle matches a particular facet of the surface meshing and the other one is oriented inwards perpendicularly to the surface triangulation.
Keywords :
Antennas; Conductors; Integral equations; Method of moments; Surface impedance; Testing; Tin;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computational Electromagnetics International Workshop (CEM), 2015
Conference_Location :
Izmir, Turkey
Print_ISBN :
978-1-4673-9279-2
Type :
conf
DOI :
10.1109/CEM.2015.7237423
Filename :
7237423
Link To Document :
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