Finite Difference Time Domain Formulations for 2D Scattering Problems With Oblique Incident Plane Waves

The electromagnetic scattering from two dimensional objects under oblique incident plane wave using the finite difference time domain technique is hardly realized. In a recent attempt, the constant-kz formulation is reported where the numerical results can only be provided, after one simulation, for...

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Veröffentlicht in:IEEE transactions on antennas and propagation 2014-09, Vol.62 (9), p.4820-4822
Hauptverfasser: Aydin, Adem G., Elsherbeni, Atef Z., Henin, Bassem H.
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Elsherbeni, Atef Z.
Henin, Bassem H.
description The electromagnetic scattering from two dimensional objects under oblique incident plane wave using the finite difference time domain technique is hardly realized. In a recent attempt, the constant-kz formulation is reported where the numerical results can only be provided, after one simulation, for a limited number of frequencies each associated with a specific oblique incident angle. The approach proposed here provides a broader frequency range results for any selected angle of incidence using one simulation on a 2D finite difference grid. Formulations and sample simulation results are presented.
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subjects Antennas
Computer simulation
Dielectrics
Electromagnetic scattering
Finite difference methods
Finite-difference time-domain method (FDTD)
Frequency ranges
Frequency-domain analysis
Mathematical analysis
Mathematical models
oblique incidence
Plane waves
scattering
Simulation
Time-domain analysis
Two dimensional
title Finite Difference Time Domain Formulations for 2D Scattering Problems With Oblique Incident Plane Waves
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