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Guided-mode extracted integral equation combined with quasi-multiple medium for computer aided design of 2-dimensional waveguide

机译:导模提取的积分方程与准多重介质相结合的二维波导计算机辅助设计

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The guided-mode extracted integral equation (GMEIE) was proposed as a basic theory for the computer aided design (CAD) of a 2-dimensional waveguide (Tanaka, K. and Kojima, M., 1988). The GMEIE has some advantages: (1) it is solved by the standard method of moments; (2) it does not use a mode expansion technique; (3) it is mathematically rigorous. The disadvantage of the GMEIE is that the coefficient matrix obtained by the standard method of moments is dense. Therefore, the computational cost to solve the matrix equation is expensive, and a fast method is required to solve the huge problem and to extend it to the 3-dimensional waveguide problem. The quasi-multiple medium (QMM) method (Yu, W. et al., 2003; Yu and Wang, Z., 2003) decomposes each region into a few fictitious medium regions. Applying the method of moments, QMM generates a coefficient matrix with high sparsity. We derive a GMEIE combined with QMM, in order to reduce the computational cost. When the GMEIE combined with QMM is discretized into a matrix equation by the standard method of moments, the resultant matrix has high sparsity. The computational cost of the matrix vector multiplication is reduced when an iterative method is used to solve the sparse matrix equation.
机译:提出了导模提取积分方程(GMEIE)作为二维波导计算机辅助设计(CAD)的基本理论(Tanaka,K.和Kojima,M.,1988)。 GMEIE具有一些优点:(1)通过标准矩量法解决; (2)不使用模式扩展技术; (3)从数学上讲是严格的。 GMEIE的缺点是通过标准矩量法获得的系数矩阵很密集。因此,求解矩阵方程的计算成本是昂贵的,并且需要快速的方法来解决巨大的问题并将其扩展到三维波导问题。准多重介质(QMM)方法(Yu,W. et al。,2003; Yu and Wang,Z.,2003)将每个区域分解为几个虚拟介质区域。应用矩量法,QMM生成具有高稀疏性的系数矩阵。为了降低计算成本,我们推导了结合QMM的GMEIE。当通过标准矩量法将结合QMM的GMEIE离散成矩阵方程时,所得矩阵具有较高的稀疏性。当使用迭代方法求解稀疏矩阵方程时,矩阵矢量乘法的计算成本得以降低。

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