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Method of Moments Based on Equivalent Periodic Problem and FFT with NURBS Surfaces for Analysis of Multilayer Periodic Structures

机译:基于等效周期问题和NURBS曲面的矩的矩,用于分析多层周期性结构

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摘要

In this paper, an efficient technique of computation of method of moments (MM) matrix entries for multilayer periodic structures with NURBS surface and Bézier patches modelling is proposed. An approximation in terms of constant pulses of generalized rooftop basis functions (BFs) defined on Bézier patches is proposed. This approximation leads discrete convolutions instead of usual continuous convolution between Green’s functions and BFs obtained by the direct mixed potential integral equation (MPIE) approach. An equivalent periodic problem (EPP) which contains the original problem is proposed to transform the discrete convolutions in discrete cyclic convolutions. The resultant discrete cyclic convolutions are computed by efficiently using the Fast Fourier Transform (FFT) procedure. The performance of the proposed method and direct computation of the MM entries are compared for phases of reflection coefficient. The proposed method is between 9 and 50 times faster than the direct computation for phase errors less than 1 deg. The proposed method exhibits a behaviour of CPU time consumption of O(NbLog10Nb) as the number Nb of BFs increases. This behaviour provides significant CPU time savings with respect to the expected behaviour of O(Nb2) provided by the direct computation of the MM matrix entries.
机译:在本文中,提出了一种有效的计算方法(MM)矩阵条目的多层周期性结构与NURBS表面和Bézier贴片建模的高效计算。提出了在Bézier斑块上定义的广义屋顶基函数(BFS)的恒定脉冲方面的近似值。该近似导致离散卷积而不是通过直接混合电位整体方程(MPIE)方法获得的绿色功能和BF之间的通常连续卷积。提出了包含原始问题的等效周期问题(EPP)以在离散循环卷积中转换离散卷积。通过有效地使用快速傅里叶变换(FFT)程序来计算所得到的离散循环卷积。比较阶段的方法和直接计算MM条目的性能,以进行反射系数的相位。该方法的速度比小于1°的相位误差的直接计算速度快9到50倍。当BFS的数量NB增加时,所提出的方法表现出O(NBLOG10NB)的CPU时间消耗的行为。该行为提供了关于MM矩阵条目的直接计算提供的O(NB2)的预期行为的显着CPU时间节省。

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