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Image reconstruction for a partially immersed perfectly conducting cylinder using the steady state genetic algorithm

机译:基于稳态遗传算法的部分浸入式导电圆柱体的图像重建

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This paper presents a computational approach to the imaging of a partially immersed perfectly conducting cylinder by the steady state genetic algorithm. A conducting cylinder of unknown shape scatters the incident transverse magnetic (TM) wave in free space while the scattered field is recorded in free space. Based on the boundary condition and the measured scattered field, a set of nonlinear integral equations is derived and the imaging problem is reformulated into an optimization problem. An improved steady state genetic algorithm is employed to search for the global extreme solution. Numerical results demonstrate that, even when the initial guess is far away from the exact one, good reconstruction can be obtained. Numerical results also show that the reconstructed image in the free space area is better than that in the medium area.
机译:本文提出了一种通过稳态遗传算法对部分浸没的导电圆柱进行成像的计算方法。未知形状的导电圆柱体在自由空间中散射入射的横向电磁波,而散射场则记录在自由空间中。根据边界条件和测得的散射场,导出一组非线性积分方程,并将成像问题重新表述为优化问题。一种改进的稳态遗传算法被用来寻找全局极限解。数值结果表明,即使初始猜测值与实际值相距甚远,也可以获得良好的重构效果。数值结果还表明,在自由空间区域中的重建图像要好于在中等区域中的重建图像。

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