DocumentCode
1539168
Title
Multipoint Galerkin asymptotic waveform evaluation for model order reduction of frequency domain FEM electromagnetic radiation problems
Author
Slone, Rodney Daryl ; Lee, Robert ; Jin-Fa Lee
Author_Institution
Dept. of Electr. Eng., Ohio State Univ., Columbus, OH, USA
Volume
49
Issue
10
fYear
2001
fDate
10/1/2001 12:00:00 AM
Firstpage
1504
Lastpage
1513
Abstract
In this paper, a model order reduction technique is presented. This technique, known as Galerkin asymptotic waveform evaluation (GAWE), or multipoint Galerkin asymptotic waveform evaluation (MGAWE) if multiple expansion points are considered simultaneously, can be used to reduce matrices describing electromagnetic (EM) phenomena generated through the finite element method (FEM) to a smaller space while still accurately approximating the characteristics of the original responses. The resulting solution procedure of using GAWE or MGAWE, to solve FEM equations allows for wideband frequency simulations with a reduction in total computation time. Numerical simulations using these methods are shown along with traditional methods such as using an LU decomposition at each frequency point of interest and asymptotic waveform evaluation (AWE). Comparisons in accuracy as well as computation time are also given
Keywords
Galerkin method; antenna radiation patterns; electromagnetic wave scattering; finite element analysis; frequency-domain analysis; matrix algebra; 2D Helmholtz equation; EM phenomena; EM scattering problems; FEM equations solution; GAWE; Galerkin asymptotic waveform evaluation; LU decomposition; MGAWE; accuracy; anisotropic PML; antenna radiation problems; asymptotic waveform evaluation; computation time reduction; electromagnetic phenomena; finite element method; frequency domain FEM EM radiation; matrices; model order reduction; moment matching; multiple expansion points; multipoint Galerkin asymptotic waveform evaluation; numerical simulations; perfectly matched layer; wideband frequency simulations; Character generation; Computational modeling; Electromagnetic scattering; Equations; Extraterrestrial phenomena; Finite element methods; Frequency; Moment methods; Numerical simulation; Wideband;
fLanguage
English
Journal_Title
Antennas and Propagation, IEEE Transactions on
Publisher
ieee
ISSN
0018-926X
Type
jour
DOI
10.1109/8.954940
Filename
954940
Link To Document