DocumentCode
2035228
Title
A new fast and rapidly converging method for the solution of the electric field integral equation
Author
Andriulli, Francesco P. ; Vecchi, G.
fYear
2009
fDate
14-18 Sept. 2009
Firstpage
907
Lastpage
904
Abstract
This paper presents a new fast matrix-vector multiplication scheme for the solution of the electric field integral equation. Similarly to other fast methods, our approach reduces the matrix-vector multiplication cost from O(N2) to O(N log N). Differently from other fast solvers, however, the effectiveness of EFIE preconditioning techniques such as quasi-Helmholtz decompositions or Calderon approaches is maintained by our method even for very high matrix compression rates. This is thanks to the fact that, in the scheme we are proposing, the contribution from the scalar potential when applied to or tested with solenoidal functions is always zero independent of the compression error. In addition, the new method will take advantage of the redundancies of the EFIE matrix in the low-frequency/dense discretization regime, and it will further decrease both the memory storage and the multiplication cost with respect to currently available fast solvers. Numerical results will show the effectiveness of our approach and its impact on the solution of realistic problems.
Keywords
convergence of numerical methods; electric field integral equations; electromagnetic wave scattering; matrix multiplication; vectors; converging method; electric field integral equation; electromagnetic radiation; electromagnetic scattering; matrix-vector multiplication scheme; Approximation algorithms; Cost function; Electric breakdown; Fading; Integral equations; Matrix decomposition; Performance analysis; Redundancy; Scattering; Testing;
fLanguage
English
Publisher
ieee
Conference_Titel
Electromagnetics in Advanced Applications, 2009. ICEAA '09. International Conference on
Conference_Location
Torino
Print_ISBN
978-1-4244-3385-8
Electronic_ISBN
978-1-4244-3386-5
Type
conf
DOI
10.1109/ICEAA.2009.5297322
Filename
5297322
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