An efficient solver is described for the solution of the electromagnetic fields in both time and frequency domains. The proposed method employs the node-based and the edge-based finite-element method (FEM) to discretize Maxwell's equations. The resultant matrix equation is solved by the spectral Lan
β¦ LIBER β¦
Simultaneous time and frequency domain solutions of EM problems using finite element and CFH techniques
β Scribed by Kolbehdari, M.A.; Srinivasan, M.; Nakhla, M.S.; Qi-Jun Zhang; Achar, R.
- Book ID
- 114552730
- Publisher
- IEEE
- Year
- 1996
- Tongue
- English
- Weight
- 1003 KB
- Volume
- 44
- Category
- Article
- ISSN
- 0018-9480
No coin nor oath required. For personal study only.
π SIMILAR VOLUMES
Frequency-domain and time-domain finite-
β
Jian-Ming Jin; Mohammad Zunoubi; Kalyan C. Donepudi; Weng C. Chew
π
Article
π
1999
π
Elsevier Science
π
English
β 950 KB
Characterization of high frequency inter
β
Jong-Gwan Yook, ; Dib, N.I.; Ratehi, L.P.B.
π
Article
π
1994
π
IEEE
π
English
β 1018 KB
Application of domain decomposition and
β
Knight, R.E.; Flack, T.J.
π
Article
π
1999
π
IEEE
π
English
β 445 KB
Efficient time-domain and frequency-doma
β
Zunoubi, M.R.; Donepudi, K.C.; Jian-Ming Jin; Weng Cho Chew
π
Article
π
1998
π
IEEE
π
English
β 228 KB
Reduction of Computing Time for Steady-S
β
Fu, W. N.; Ho, S. L.; Zhou, Ping
π
Article
π
2012
π
IEEE
π
English
β 829 KB
Frequency-domain analysis of time-integr
β
Ata MuΗ§an; Gregory M. Hulbert
π
Article
π
2001
π
John Wiley and Sons
π
English
β 528 KB
## Abstract Timeβintegration methods for semidiscrete equations emanating from parabolic differential equations are analysed in the frequency domain. The discreteβtime transfer functions of three popular methods are derived, and subsequently the forced response characteristics of single modes are s