DocumentCode :
1325458
Title :
Time-Domain Field and Scattering Parameter Computation in Waveguide Structures by GPU-Accelerated Discontinuous-Galerkin Method
Author :
Potratz, Carsten ; Glock, Hans-Walter ; Van Rienen, Ursula
Author_Institution :
Inst. fur Allgemeine Elektrotechnik (IAE), Univ. Rostock, Rostock, Germany
Volume :
59
Issue :
11
fYear :
2011
Firstpage :
2788
Lastpage :
2797
Abstract :
In this paper, we demonstrate the discontinuous Galerkin finite-element method (DG-FEM) used for the computation of electromagnetic fields in the interior of 3-D structures with open waveguide ports. This method is particularly applied to derive frequency-dependent scattering parameters. The method allows explicit formulations in time domain on unstructured meshes with high polynomial approximation order. Furthermore, it is well suited to be used in massively parallel organized computing environments. One necessary prerequisite for scattering parameter computations is the appropriate modeling of multimode broadband waveguide boundary conditions. Here we present a method of general applicability and its realization in the framework of DG-FEM. The entire procedure was implemented on low-cost graphic processing units. Two test examples are given, one of them of direct practical relevance in the field of particle accelerator design. The results are in excellent agreement with those of a commercially available frequency-domain finite-element method code.
Keywords :
Galerkin method; electromagnetic fields; finite element analysis; waveguides; DG-FEM; GPU-accelerated discontinuous-Galerkin method; discontinuous Galerkin finite-element method; electromagnetic field; frequency-dependent scattering parameter; frequency-domain finite-element method code; low-cost graphic processing unit; multimode broadband waveguide boundary condition; particle accelerator; time-domain field; waveguide structure; Boundary conditions; Electromagnetic waveguides; Finite element methods; Graphics processing unit; Moment methods; Scattering parameters; Time domain analysis; Transmission line matrix methods; $S$-parameter; Discontinuous Galerkin; discontinuous Galerkin finite-element method (DG-FEM); graphic processing unit (GPU); time domain; waveguide boundary condition;
fLanguage :
English
Journal_Title :
Microwave Theory and Techniques, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9480
Type :
jour
DOI :
10.1109/TMTT.2011.2166163
Filename :
6024470
Link To Document :
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