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首页> 外文期刊>Microwaves, Antennas & Propagation, IET >Parallel fast multiple method for electromagnetic scattering from one-dimensional large-scale twolayered rough surfaces for large angles of incidence
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Parallel fast multiple method for electromagnetic scattering from one-dimensional large-scale twolayered rough surfaces for large angles of incidence

机译:一维大型两层粗糙表面大入射角电磁散射的并行快速多重方法

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摘要

A fast multiple method (FMM) is proposed for the fast implementation of electromagnetic scattering from onedimensional (1-D) two-layered rough surfaces. Both horizontal (HH) and vertical (VV) polarised incident waves are considered. In particular, the focus in this study is on large angles of incidence. The parallel FMM is presented based on the message passing interface (MPI) of personal computer clusters. The bi-conjugate gradient method is adopted to solve the unsymmetrical matrix equation and is parallelised according to the property of MPI. The simulation time and parallel speedup ratio with different processors are also provided for one surface realisation. The algorithm is validated by comparing the angular distribution of bi-static scattering with that of the finite-difference time-domain (FDTD) technique. Bi-static scattering coefficient (BSC) by two-layered rough surfaces with different incident angles is exhibited. Finally, the influences of the characteristic parameters of rough surfaces, the relative permittivity of the media, as well as the average height between the two rough surfaces on the BSC for large angles of incidence are discussed.
机译:提出了一种快速多重方法(FMM),用于快速实现一维(1-D)两层粗糙表面的电磁散射。水平(HH)和垂直(VV)极化入射波均被考虑。特别地,本研究的重点是大入射角。基于个人计算机集群的消息传递接口(MPI)提出了并行FMM。采用双共轭梯度法求解不对称矩阵方程,并根据MPI的性质进行并行化。还为一种表面实现提供了使用不同处理器的仿真时间和并行加速比。通过比较双静态散射的角分布与有限差分时域(FDTD)技术的角分布来验证该算法。显示出具有不同入射角的两层粗糙表面的双静态散射系数(BSC)。最后,讨论了大入射角时,粗糙表面的特征参数,介质的相对介电常数以及BSC上两个粗糙表面之间的平均高度的影响。

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