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Applicability and Optimization of the Alternating-Direction-Implicit Iterative Method for the 2-D Finite-Difference Frequency-Domain Solution of Scattering Problems

机译:散射问题二维有限差分频域解的交替方向-迭代迭代法的适用性和优化

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摘要

The applicability of the alternating-direction-implicit (ADI) iterative method for the 2-D finite-difference frequency-domain (FDFD) solution of electromagnetic problems is studied, evaluated, and optimized. The ADI is used as an iterative solver of the system of linear equations resulting from the FDFD formulation. The physical limitations of applying the ADI method with a single acceleration parameter are examined in terms of its convergence behavior. In order to overcome these limitations, multiple acceleration parameters are necessary. An optimization procedure based on the simulated annealing algorithm is presented in order to obtain the optimum or near-optimum acceleration parameters. The approach is applied on the scattering problem by a dielectric cylinder as a test. The optimized acceleration parameters are compared with the ones suggested by Hadley. The acceleration parameters depend on the type of transparency conditions used to treat open-boundary problems. A simple absorbing layer (ABL), the stretched-coordinated perfectly matched layer (SC-PML), and the uniaxial PML are tested for both TE and TM polarizations. The SC-PML absorbing condition seems to be the best solution for the ADI iterative implementation of FDFD. Finally, empirical acceleration parameters are proposed for arbitrary scatterers for ABL and SC-PML absorbing conditions.
机译:研究,评估和优化了交替方向隐式(ADI)迭代方法在电磁问题的二维有限差分频域(FDFD)解决方案中的适用性。 ADI用作FDFD公式得出的线性方程组的迭代求解器。根据其收敛行为,研究了将ADI方法应用于单个加速度参数的物理局限性。为了克服这些限制,需要多个加速参数。提出了一种基于模拟退火算法的优化程序,以获得最优或接近最优的加速度参数。该方法通过介电圆柱体应用于散射问题作为测试。将优化的加速度参数与Hadley建议的参数进行比较。加速参数取决于用于处理开放边界问题的透明性条件的类型。测试了简单吸收层(ABL),拉伸协调完美匹配层(SC-PML)和单轴PML的TE和TM偏振。 SC-PML吸收条件似乎是FDFD ADI迭代实现的最佳解决方案。最后,针对ABL和SC-PML吸收条件下的任意散射体,提出了经验加速度参数。

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