首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >A Three-Dimensional Adaptive Integral Method for Scattering From Structures Embedded in Layered Media
【24h】

A Three-Dimensional Adaptive Integral Method for Scattering From Structures Embedded in Layered Media

机译:分层介质中嵌入的结构散射三维自适应积分方法

获取原文
获取原文并翻译 | 示例

摘要

A 3-D extension of the adaptive integral method (AIM) is presented for fast analysis of scattering from electrically large perfect electrically conducting structures embedded inside a single layer of a planar layered medium. The proposed scheme accelerates the iterative method-of-moments (MOM) solution of the combined-field integral equation by employing a 3-D auxiliary regular grid. It uses the auxiliary grid to execute the standard four-stage AIM procedure; unlike the procedure for free space, two different sets of matrices are obtained for the AIM propagation stage by decomposing the Green functions to terms that are in convolution or correlation form in the stratification direction. These matrices are in (three level) block-Toeplitz and Hankel-(two level)-block-Toeplitz forms and can be multiplied by using 3-D FFTs. The dominant computational costs of the scheme are the evaluation of O(N) different layered-medium Green functions, which is accelerated by extracting asymptotic terms and using interpolation tables, and the matrix multiplications in the propagation stage, which require only O(NC log NC) per iteration; these should be contrasted to the O(N2) Green function evaluations and O(N2) operations per iteration required by the classical MOM. Here, NC denotes the number of nodes on the auxiliary grid, and N denotes the number of degrees of freedom of the surface current density. Numerical results validate the proposed method's complexity, demonstrate its accuracy for several large-scale structures in layered media, and compare its computational costs to those of its counterpart for free space.
机译:提出了一种自适应积分法(AIM)的3-D延伸,以便快速分析从嵌入平面层状介质的单层内部的电大的完美导电结构散射。该方案通过采用3-D辅助常规网格加速了组合领域积分方程的迭代矩(MOM)解决方案。它使用辅助网格执行标准的四级目标程序;与自由空间的过程不同,通过将绿色功能分解到在分层方向上的卷积或相关形式的术语中,获得两组不同的矩阵。这些矩阵在(三个级别)块 - Toeplitz和Hankel-(两个级别)-Block-toeplitz形式,并且可以通过使用3-D FFT来乘以。该方案的主要计算成本是评估O(n)不同的分层介质绿色函数,其通过提取渐近术语和使用插值表来加速,并且在传播阶段中的矩阵乘法仅需要O(n <迭代的子> C log n c );这些应与经典妈妈所需的迭代所需的O(n 2 )绿色函数评估和O(n 2 )的操作。这里,n c 表示辅助网格上的节点数,n表示表面电流密度的自由度的数量。数值结果验证了所提出的方法的复杂性,展示其分层介质中几种大规模结构的准确性,并将其计算成本与可自由空间的对应物的计算成本进行比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号