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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Optimization of low-loss and wide-band sharp photonic crystal waveguide bends using the genetic algorithm
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Optimization of low-loss and wide-band sharp photonic crystal waveguide bends using the genetic algorithm

机译:利用遗传算法优化低损耗宽带宽带光子晶体波导弯头

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摘要

This work discusses a robust genetic-algorithm based hybrid optimization scheme which was applied to handle the transmission problem in planar photonic crystal waveguide bend. For test purpose, two objective functions were proposed to characterize the transmission property of bend working at a special frequency or even over an entire frequency range. Optimization results for different 90° and 120° sharp bends have shown that, with the assistant of genetic-algorithm, random sizes of the cylinders surrounding the bend corner which correspond the maximum value of test functions are able to be rapidly obtained and obvious improvement of transmission property can be observed from each optimal bend structure, especially remarkable for the case of 120-I type bend.
机译:这项工作讨论了一个鲁棒的基于遗传算法的混合优化方案,该方案用于处理平面光子晶体波导弯曲中的传输问题。为了进行测试,提出了两个目标函数来表征在特定频率甚至整个频率范围内弯曲工作的传输特性。对不同的90°和120°锐角弯头的优化结果表明,借助遗传算法,可以快速获得弯角周围圆柱体的随机尺寸,这些尺寸对应于测试功能的最大值,并且可以明显改善可以从每个最佳弯曲结构观察到传输特性,对于120-I型弯曲情况尤为明显。

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