DocumentCode
742533
Title
Discontinuous Galerkin Time-Domain Methods for Multiscale Electromagnetic Simulations: A Review
Author
Jiefu Chen ; Qing Huo Liu
Author_Institution
Adv. R&D Center, Weatherford Int. Ltd., Houston, TX, USA
Volume
101
Issue
2
fYear
2013
Firstpage
242
Lastpage
254
Abstract
Efficient multiscale electromagnetic simulations require several major challenges that need to be addressed, such as flexible and robust geometric modeling schemes, efficient and stable time-stepping methods, etc. Due to the versatile choices of spatial discretization and temporal integration, discontinuous Galerkin time-domain (DGTD) methods can be very promising in simulating transient multiscale problems. This paper provides a comprehensive review of different DGTD schemes, highlighting the fundamental issues arising in each step of constructing a DGTD system. The issues discussed include the selection of governing equations for transient electromagnetic analysis, different basis functions for spatial discretization, as well as the implementation of different time-stepping schemes. Numerical examples demonstrate the advantages of DGTD for multiscale electromagnetic simulations.
Keywords
Galerkin method; computational electromagnetics; time-domain analysis; discontinuous Galerkin time-domain methods; multiscale electromagnetic simulations; spatial discretization; temporal integration; time-stepping methods; transient electromagnetic analysis; Finite difference methods; Finite element methods; Mathematical model; Moment methods; Time domain analysis; Discontinuous Galerkin time-domain (DGTD) method; domain decomposition method (DDM); finite-difference time-domain (FDTD) method; finite-element time-domain (FETD) method; multiscale analysis; pseudospectral time-domain (PSTD) method; time-domain electromagnetic simulation;
fLanguage
English
Journal_Title
Proceedings of the IEEE
Publisher
ieee
ISSN
0018-9219
Type
jour
DOI
10.1109/JPROC.2012.2219031
Filename
6355594
Link To Document