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用于衍射光学元件优化设计的遗传局部搜索算法

Genetic local search algorithm for optimization design of diffractive optical elements.

作者信息

Zhou G, Chen Y, Wang Z, Song H

机构信息

Information Storage Research Center, Shanghai Jiaotong University, 1954 Hua Shan Road, Shanghai 200030, China.

出版信息

Appl Opt. 1999 Jul 10;38(20):4281-90. doi: 10.1364/ao.38.004281.

Abstract

We propose a genetic local search algorithm (GLSA) for the optimization design of diffractive optical elements (DOE's). This hybrid algorithm incorporates advantages of both genetic algorithm (GA) and local search techniques. It appears better able to locate the global minimum compared with a canonical GA. Sample cases investigated here include the optimization design of binary-phase Dammann gratings, continuous surface-relief grating array generators, and a uniform top-hat focal plane intensity profile generator. Two GLSA's whose incorporated local search techniques are the hill-climbing method and the simulated annealing algorithm are investigated. Numerical experimental results demonstrate that the proposed algorithm is highly efficient and robust. DOE's that have high diffraction efficiency and excellent uniformity can be achieved by use of the algorithm we propose.

摘要

我们提出一种用于衍射光学元件(DOE)优化设计的遗传局部搜索算法(GLSA)。这种混合算法融合了遗传算法(GA)和局部搜索技术的优点。与传统遗传算法相比,它似乎更能找到全局最小值。这里研究的示例包括二元相位达曼光栅、连续表面浮雕光栅阵列发生器以及均匀平顶焦平面强度分布发生器的优化设计。研究了两种局部搜索技术分别为爬山法和模拟退火算法的GLSA。数值实验结果表明,所提出的算法高效且稳健。使用我们提出的算法可以实现具有高衍射效率和出色均匀性的DOE。

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