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Perfectly matched layer for the FDTD solution of wave-structure interaction problems

IEEE Transactions on Antennas and Propagation · 1996 · Vol. 44(1) · pp. 110–117
Jean-Pierre Bérenger

Abstract

The wave-structure interactions are the most usual applications of the finite-difference method, in electromagnetic compatibility and radar cross-section computations. The aim of this paper is to get a detailed insight into the implementation of the perfectly matched layer (PML) technique when dealing with such important applications. The PML is a new technique developed for the simulation of free space with the finite-difference time-domain (FDTD) method. This paper deals with the application of this technique to the solution of wave-structure interaction problems. It is shown that the absorbing layer can be set very close to the structure, provided some specifications are satisfied, with the consequence that the computational requirements of the PML technique are far shorter than those of the other methods of free space simulation.

Electromagnetic Simulation and Numerical MethodsLightning and Electromagnetic PhenomenaElectromagnetic Scattering and AnalysisFinite-difference time-domain methodPerfectly matched layerRadar cross-sectionComputationComputer scienceElectromagnetic compatibilityFinite difference methodFree spaceRadarComputational electromagnetics
Citations
472
FWCI
16.43
field-weighted impact
References
11
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Citations per year
References
Absorbing boundary conditions for the numerical simulation of waves
Mathematics of Computation · 1977 · 2,369 citations
A perfectly matched layer for the absorption of electromagnetic waves
Journal of Computational Physics · 1994 · 9,855 citations
Numerical solution of initial boundary value problems involving maxwell's equations in isotropic media
IEEE Transactions on Antennas and Propagation · 1966 · 14,551 citations
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