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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Bistatic scattering and transmitting through a fractal rough surface with high permittivity using the physics-based two-grid method in conjunction with the forward-backward method and spectrum acceleration algorithm
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Bistatic scattering and transmitting through a fractal rough surface with high permittivity using the physics-based two-grid method in conjunction with the forward-backward method and spectrum acceleration algorithm

机译:基于物理学的两网格方法,结合前向后向方法和频谱加速算法,通过高介电常数的分形粗糙表面进行双基地散射和透射

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摘要

To numerically calculate bistatic scattering from a fractal rough surface with high permittivity, a comprehensive approach of the forward-backward method (FBM) with spectral acceleration algorithm (SAA) combined with the physics-based two-grid (PBTG) method is developed. Bistatic scattering from and transmitting through one-dimensional (1-D) fractal rough surface with high permittivity, under TE and TM tapered wave incidence, are numerically simulated. Angular reflectivity and transmittivity demonstrate the energy conservation and the functional dependences upon the surface parameters.
机译:为了对高介电常数的分形粗糙表面的双基地散射进行数值计算,开发了一种结合频谱加速算法(SAA)的前向后方法(FBM)和基于物理的两网格(PBTG)方法的综合方法。在TE和TM锥形波入射下,模拟了高介电常数的一维(一维)分形粗糙表面的双向散射并传播。角反射率和透射率证明了能量守恒和功能对表面参数的依赖性。

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