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Effects of the nature of the starting population on the properties of Rugate filters designed with the genetic algorithm

机译:初始种群的性质对遗传算法设计的Rugate过滤器性能的影响

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摘要

The genetic algorithm optimization technique for optical filter design is applied to two starting populations, an inverse Fourier transform population and a random population. The refractive index profiles after convergence, and the transmittance of the filter outside the region of support, are markedly different in the two cases. The Fourier filter has lower sidelobes and fails gracefully outside the region of support whereas the random filter fails catastrophically in this wavelength region. The ripple in the passband is higher for the random filter. Furthermore, the average value of refractive index profile and the excursion in refractive index are much larger for the filter generated with the random starting population. However, most of the drawbacks of the random starting population are eliminated by chromosome manipulation in the spatial frequency domain. The fitter properties after this intervention approximate those of the Fourier filter.
机译:用于滤光片设计的遗传算法优化技术被应用于两个初始种群,一个逆傅立叶变换种群和一个随机种群。在两种情况下,会聚后的折射率分布以及滤光片在支撑区域之外的透射率明显不同。傅里叶滤光片的旁瓣较低,在支撑区域之外会正常失效,而随机滤光片在该波长范围内则灾难性地失效。对于随机滤波器,通带中的纹波较高。此外,对于以随机起始种群产生的滤光片,折射率分布的平均值和折射率偏移要大得多。但是,通过在空间频域中进行染色体操纵,消除了随机起始种群的大多数弊端。干预后的装配工特性近似于傅立叶滤波器的特性。

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