首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Multilevel Green's function interpolation method for scattering from composite metallic and dielectric objects
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Multilevel Green's function interpolation method for scattering from composite metallic and dielectric objects

机译:用于复合金属和电介质物体散射的多级格林函数插值方法

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摘要

A multilevel Green's function interpolation method based on two kinds of multilevel partitioning schemes--the quasi-2D and the hybrid partitioning scheme--is proposed for analyzing electromagnetic scattering from objects comprising both conducting and dielectric parts. The problem is formulated using the surface integral equation for homogeneous dielectric and conducting bodies. A quasi-2D multilevel partitioning scheme is devised to improve the efficiency of the Green's function interpolation. In contrast to previous multilevel partitioning schemes, noncubic groups are introduced to discretize the whole EM structure in this quasi-2D multilevel partitioning scheme. Based on the detailed analysis of the dimension of the group in this partitioning scheme, a hybrid quasi-2D/3D multilevel partitioning scheme is proposed to effectively handle objects with fine local structures. Selection criteria for some key parameters relating to the interpolation technique are given. The proposed algorithm is ideal for the solution of problems involving objects such as missiles, microstrip antenna arrays, photonic bandgap structures, etc. Numerical examples are presented to show that CPU time is between O(N) and O(NlogN) while the computer memory requirement is O(N).
机译:提出了一种基于准两维和混合分区方案的两种多级划分方案的多级格林函数插值方法,用于分析来自包括导电和介电部分的物体的电磁散射。该问题是使用均匀介电体和导体的表面积分方程来表示的。为了提高格林函数插值的效率,提出了一种准二维的多层划分方案。与以前的多级分区方案相比,在这种准2D多级分区方案中,引入了非三次群来离散化整个EM结构。在详细分析该划分方案中组的维数的基础上,提出了一种混合准2D / 3D多级划分方案,以有效地处理具有精细局部结构的对象。给出了一些与插值技术有关的关键参数的选择标准。所提出的算法是解决诸如导弹,微带天线阵列,光子带隙结构等物体问题的理想选择。数值算例表明,在计算机内存中,CPU时间介于O(N)和O(NlogN)之间。要求是O(N)。

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