Consider a time-harmonic electromagnetic plane wave incident on an inhomogeneity embedded in a two-layered medium. In this paper, a method of coupling of finite element and boundary integral equation methods is presented for the solutions of electromagnetic scattering in both transverse electric and
Finite element–boundary integral methods in electromagnetics
✍ Scribed by D.T. Nguyen; J. Qin; M.I. Sancer; R. McClary
- Publisher
- Elsevier Science
- Year
- 2002
- Tongue
- English
- Weight
- 121 KB
- Volume
- 38
- Category
- Article
- ISSN
- 0168-874X
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✦ Synopsis
Mixed sparse-dense, symmetrical-unsymmetrical direct equation solution algorithms are developed, and utilized to fully exploit the special characteristics of the coe cient matrix of system of linear (complex numbers) simultaneous equations. Numerical performance of the developed software is conducted, by performing a simpliÿed Northrop-Grumman ÿnite element-integral equation cavity model on the IBM-R6000=590 workstation.
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## Abstract The “conventional” finite element‐boundary integral (FE‐BI) method suffers from two major drawbacks, one is the huge computer resources required by the dense BI submatrix; the other is the slow convergence rate of the resulting linear system of equations. In this article, both the drawb