Inverse scattering of a lossy dielectric object by the genetic algorithm

Yi-Da Wu, C. Chiu
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引用次数: 2

Abstract

In this paper, an efficient optimization algorithm for solving the inverse problem of a two-dimensional homogeneous lossy dielectric object is investigated. A homogeneous lossy dielectric cylinder of unknown permittivity scatters the incident wave in free space and the scattered fields are recorded. Based on the boundary condition and the incident field, a set of nonlinear surface integral equations is derived. The imaging problem is reformulated into an optimization problem and the genetic algorithm is employed to reconstruct the shape and the dielectric constant of the object. Numerical results show that the permittivity of the cylinders can be successfully reconstructed even when the permittivity is fairly large. The effect of random noise on imaging reconstruction is also investigated.
用遗传算法求解有耗介质物体的逆散射
本文研究了一种求解二维均匀有耗介质目标反问题的高效优化算法。一个介电常数未知的均匀有耗介质圆柱体将入射波散射到自由空间,并记录散射场。基于边界条件和入射场,导出了一组非线性曲面积分方程。将成像问题转化为优化问题,利用遗传算法重构目标的形状和介电常数。数值结果表明,即使在较大的介电常数条件下,也可以成功地重建圆柱的介电常数。研究了随机噪声对图像重建的影响。
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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