A new 2D non-spurious discontinuous Galerkin Finite Element Time Domain (DG-FETD) method for Maxwell's equations

Qiang Ren, Luis E. Tobón, Qing Huo Liu

Producción: Contribución a una revistaArtículorevisión exhaustiva

22 Citas (Scopus)

Resumen

A new discontinuous Galerkin Finite Element Time Domain (DG-FETD) method for Maxwell's equations is developed. It can suppress spurious modes using basis functions based on polynomials with the same order of interpolation for electric field intensity and magnetic flux density (EB scheme). Compared to FETD based on EH scheme, which reqires different orders of interpolation polynomials for electric and magnetic field intensities, this method uses fewer unknowns and reduces the computation load. The discontinuous Galerkin method is employed to implement domain decomposition for the EB scheme based FETD. In addition, a well-posed time-domain perfectly matched layer (PLM) is extended to the EB scheme to simulate the unbounded problem. Leap frog method is utilized for explicit time stepping. Numerical results demonstrate that the above proposed methods are effective and efficient for 2D time domain TMz multi-domain problems.

Idioma originalInglés
Páginas (desde-hasta)385-404
Número de páginas20
PublicaciónProgress in Electromagnetics Research
Volumen143
DOI
EstadoPublicada - 2013

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