A HYBRID FINITE-ELEMENT METHOD FOR 3-D SCATTERING USING NODAL AND EDGE ELEMENTS

Authors
Citation
We. Boyse et Aa. Seidl, A HYBRID FINITE-ELEMENT METHOD FOR 3-D SCATTERING USING NODAL AND EDGE ELEMENTS, IEEE transactions on antennas and propagation, 42(10), 1994, pp. 1436-1442
Citations number
35
Categorie Soggetti
Telecommunications,"Engineering, Eletrical & Electronic
ISSN journal
0018926X
Volume
42
Issue
10
Year of publication
1994
Pages
1436 - 1442
Database
ISI
SICI code
0018-926X(1994)42:10<1436:AHFMF3>2.0.ZU;2-2
Abstract
A hybrid finite element method for three-dimensional scattering is pre sented and numerical examples shown. This approach, which couples fini te element discretization with the method of moments, is particularly well suited for monostatic radar cross section calculations. The metho d is based on a scalar and vector potential formulation of Maxwell's e quations, the use of nodal elements, and a highly efficient body of re volution implementation of the method of moments. Combined nodal and e dge elements am employed to accurately model fields around corners and edges. A curvature-based sampling criterion is derived and shown to e nsure accurate answers for highly curved scatterers. Numerical results and Cray computer timings are compared with published results for an edge element code using radiation boundary conditions.