Time-Domain Scattering Modelling of Two-Dimensional Cylinder Located on a Rough Surface
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Abstract
Numerical modelling on the transient electromagnetic scattering by a two-dimensional (2D) cylinder located on a time-evolving rough surface is presented by using time-domain integral equations. The proposed special choice of a tapered Gauss pulse incident wave removes the truncation error from the rough surface. Additionally, a two-level averaging technique is utilized to overcome the instability from the time marching procedure of solving integral equations. Excellent correspondences between the surface current distributions, as well as the far-zone fields, computed by the proposed method and that obtained by the traditional method of moments associated with the inverse discrete Fourier transformation scheme demonstrate the accuracy of the modelling.
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Cite this article:
ZHANG Min, LI Le-Wei, LI Ling-Xia, WU Zhen-Sen. Time-Domain Scattering Modelling of Two-Dimensional Cylinder Located on a Rough Surface[J]. Chin. Phys. Lett., 2007, 24(6): 1563-1566.
ZHANG Min, LI Le-Wei, LI Ling-Xia, WU Zhen-Sen. Time-Domain Scattering Modelling of Two-Dimensional Cylinder Located on a Rough Surface[J]. Chin. Phys. Lett., 2007, 24(6): 1563-1566.
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ZHANG Min, LI Le-Wei, LI Ling-Xia, WU Zhen-Sen. Time-Domain Scattering Modelling of Two-Dimensional Cylinder Located on a Rough Surface[J]. Chin. Phys. Lett., 2007, 24(6): 1563-1566.
ZHANG Min, LI Le-Wei, LI Ling-Xia, WU Zhen-Sen. Time-Domain Scattering Modelling of Two-Dimensional Cylinder Located on a Rough Surface[J]. Chin. Phys. Lett., 2007, 24(6): 1563-1566.
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