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Spatially dispersive model of wire medium for scattering

Spatially dispersive model of wire medium for scattering
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摘要 The electromagnetic properties of wire medium are studied by analyzing its transmission coefficient, and a homogeneous uniaxial effective permittivity tensor with one spatially dispersive component is obtained. In order to evaluate the validity of the equivalent model for scattering problems, the bistatic and monostatic radar cross sections (RCS) of a block of wire medium are investigated with the finite-difference time-domain (FDTD) method. The difference of RCS from the physical wire medium and the corresponding equivalent model has been compared and analyzed under va- rious parameters of wire medium, which clearly demonstrates the accuracy of the equivalent model of wire medium. The electromagnetic properties of wire medium are studied by analyzing its transmission coefficient, and a homogeneous uniaxial effective permittivity tensor with one spatially dispersive component is obtained. In order to evaluate the validity of the equivalent model for scattering problems, the bistatic and monostatic radar cross sections (RCS) of a block of wire medium are investigated with the finite-difference time-domain (FDTD) method. The difference of RCS from the physical wire medium and the corresponding equivalent model has been compared and analyzed under va- rious parameters of wire medium, which clearly demonstrates the accuracy of the equivalent model of wire medium.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2016年第4期533-539,共7页 北京理工大学学报(英文版)
基金 Supported by the National Natural Science Foundation of China(61102022) the Fundamental Research Foundation of Beijing Institute of Technology of China(20120542014)
关键词 wire medium t'mite-difference time-domain FDTD methods spatially dispersivemodel radar cross section (RCS) wire medium t'mite-difference time-domain ( FDTD ) methods spatially dispersivemodel radar cross section (RCS)
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