基于扰动运算的自适应遗传算法的微波光子滤波器结构设计

Xiangnong Wu, Ye Yin, J. Zhang, Qiang Ni
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引用次数: 0

摘要

本文提出、建立并研究了带扰动运算的自适应遗传算法对基于光纤光栅阵列的微波光子滤波器的优化。在设计中,我们假设种群大小为50,最大迭代次数为50,FBG反射率为0 ~ 1,FBG阵列中有6个均匀的FBG。仿真结果表明,与传统的无干扰遗传算法相比,优化后的仿真时间从23.5秒减少到10.8秒,缩短了一半。详细研究了fbg的数量和抽头系数的取值范围对fbg性能的影响。当fbg的抽头系数范围变小时,强积金的幅频响应会变差。对不同阻带抑制值的仿真结果表明,该算法是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural design of microwave photonic filter based on adaptive genetic algorithm with disturbance operation
In this paper, the optimization for an FBG array based microwave photonic filter using adaptive genetic algorithm with disturbance operation is proposed, established and studied. In the design we assume that the population size is 50, the maximum number of iterations is 50, the FBG reflectivity is from 0 to 1 and there are six uniform FBGs in the FBG array. The simulation results show that the optimized simulation time can be reduced by half, from 23.5 seconds to 10.8 seconds, compared with that using the traditional genetic algorithm without disturbance. The influences of the number of the FBGs and the range of the tap coefficients of the FBGs are detailed studied. The amplitude frequency response of the MPF will deteriorate when the range of the tap coefficients of the FBGs become smaller. The simulation results for different values of stopband rejections show that the proposed algorithm is feasible.
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