Population-based algorithms applied to Inverse Scattering Problem for dielectric coatings

G. Labate, P. Pirinoli, L. Matekovits
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引用次数: 0

Abstract

Characterization of cloaking, realized by conformal dielectric coatings on a fixed core cylinder and carried out through an Inverse Scattering Problem (ISP), is presented as the minimization process of a proper cost functional. In order to overcome the overall non-linearity issue of the inverse problem related to the data equation, the idea presented in this paper is to exploit the bilinear form of the ISP in two successive steps. The increase in the computational cost is compensated by an hybrid scheme with local search (i.e., CG-FFT) for finding the auxiliary variable (e.g., total field) and with global optimization algorithms (i.e., GA, SGA, BBO and PSO) for the main unknown of the inverse scattering problem (i.e., complex permittivity).
基于种群算法的介质涂层反散射问题研究
通过反散射问题(Inverse Scattering Problem, ISP)对固定芯圆柱体上共形介质涂层的隐身特性进行了表征,并将其描述为适当成本泛函的最小化过程。为了克服与数据方程相关的逆问题的整体非线性问题,本文提出的思想是分两个连续步骤利用ISP的双线性形式。计算成本的增加可以通过局部搜索(即CG-FFT)查找辅助变量(如总场)和全局优化算法(即GA, SGA, BBO和PSO)用于逆散射问题的主要未知数(即复介电常数)的混合方案来补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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