Time-dependent numerical method with boundary-conforming curvilinear coordinates applied to wave interactions with prototypical antennas (Q1604444)

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scientific article; zbMATH DE number 1763684
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Time-dependent numerical method with boundary-conforming curvilinear coordinates applied to wave interactions with prototypical antennas
scientific article; zbMATH DE number 1763684

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    Time-dependent numerical method with boundary-conforming curvilinear coordinates applied to wave interactions with prototypical antennas (English)
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    4 July 2002
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    A new unstaggered finite-difference time-dependent scheme is introduced to enable the analysis of typical two-dimensional antenna structures. The results are achieved by converting the original unbounded boundary value problem into a problem over a bounded domain using appropriate radiation operators over a finite artificial boundary. Generalized curvilinear coordinates are generated in such a way that the curvilinear boundaries correspond to coordinate lines. The numerical procedure that is then used is designed to generate almost orthogonal boundary-conforming fine grids over the bounded regions that are involved. A time-dependent method is used to obtain a time harmonic steady-state solution. The result determines the electric field wave amplitude, the wave pattern inside the waveguide, and the scattered field. An optical theorem for a flanged waveguide antenna with perfect electrical conductor walls is also derived.
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    electromagnetic scattering
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    orthogonal grid
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    finite-difference time-dependent scheme
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    two-dimensional antenna structures
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    time harmonic steady-state solution
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    optical theorem
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    flanged waveguide antenna
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