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Fast simulations of electromagnetic scattering from 1-D rough surface through adaptively modified characteristic basis function method

机译:通过自适应修正的特征基函数方法快速模拟一维粗糙表面的电磁散射

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In this paper, the Adaptively Modified Characteristic Basis Function Method (AMCBFM) is proposed to fast simulate the electromagnetic scattering from one-dimensional rough surface. Firstly, the Primary Characteristic Basis Functions (PCBFs) arising from the self-interaction within the self-block are generated, and the coefficients of the basis function and the first current of each block are obtained. Secondly, the Secondary Characteristic Basis Functions (SCBFs) which account for the mutual coupling effects from the other distinct domains are obtained by using the inter-impedances. The higher SCBFs can be also derived through the same way. Finally, a new precision method is applied to control the current error, which is used to determine the order of the higher order SCBFs. By Comparing numerical simulations through the AMCBFM and the traditional Characteristic Basis Function Method (CBFM), the AMCBFM can guarantee the accuracy and void higher iteration, and the convergence performance is better than the CBFM in the lower order SCBFs. Moreover, by comparing numerical results of the AMCBFM and the method of moments (MoM), the AMCBFM can effectively reduce the size of the impedance matrix, and significantly reduce computing time.
机译:本文提出了一种自适应修正特征基函数方法(AMCBFM),以快速模拟一维粗糙表面的电磁散射。首先,产生由自块内的自相互作用引起的基本特征基函数(PCBF),并获得基函数的系数和每个块的第一电流。其次,通过使用互阻抗来获得考虑了来自其他不同域的互耦效应的次要特征基函数(SCBF)。较高的SCBF也可以通过相同的方式得出。最后,采用一种新的精度方法来控制当前误差,该方法用于确定高阶SCBF的顺序。通过将AMCBFM与传统的特征基函数方法(CBFM)进行的数值模拟进行比较,AMCBFM可以保证精度,并且可以避免较高的迭代次数,并且在低阶SCBF中的收敛性能优于CBFM。此外,通过比较AMCBFM的数值结果和矩量法(MoM),AMCBFM可以有效地减小阻抗矩阵的大小,并显着减少计算时间。

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