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A new population based adaptive domination change mechanism for diploid genetic algorithms in dynamic environments

机译:动态环境中基于二倍体遗传算法的新的基于种群的自适应控制变化机制

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摘要

In this paper, an adaptive domination change mechanism for diploid genetic algorithms with discrete representations is presented. It is aimed at improving the performance of existing diploid genetic algorithms in changing environments. Diploidy acts as a source of diversity in the gene pool while the adaptive domination mechanism guides the phenotype towards an optimum. The combined effect of diploidy and the adaptive domination forms a balance between exploration and exploitation. The dominance characteristic of each locus in the population is adapted through feedback from the ongoing search process. A dynamic bit matching benchmark is used to perform controlled experiments. Controlled changes to implement different levels of change severities and frequencies are used. The testing phase consists of four stages. In the first stage, the benefits of the adaptive domination mechanism are shown by testing it against previously proposed diploid approaches. In the second stage, the same adaptive approach is applied to a haploid genetic algorithm to show the effect of the diploidy on the performance of the proposed approach. In the third stage, the levels of diversity introduced by diploidy on the genotype and maintained by the adaptive domination mechanism on the phenotype are explored. In the fourth stage, tests are performed to examine the robustness of the chosen approaches against different mutation rates. Currently, the dominance change mechanism can be applied to diallelic or multiallelic discrete representations and promising results are obtained as a result of the tests performed.
机译:本文提出了具有离散表示的二倍体遗传算法的自适应控制变化机制。目的是在变化的环境中提高现有二倍体遗传算法的性能。二倍体是基因库中多样性的来源,而自适应控制机制则指导表型朝着最佳方向发展。二倍体和适应性控制的综合作用在勘探和开发之间形成了平衡。人口中每个基因座的优势特征通过正在进行的搜索过程中的反馈进行调整。动态位匹配基准用于执行受控实验。使用可控制的更改来实现不同级别的更改严重性和频率。测试阶段包括四个阶段。在第一阶段,通过针对先前提出的二倍体方法进行测试来显示自适应控制机制的优势。在第二阶段,将相同的自适应方法应用于单倍体遗传算法,以显示二倍体对所提出方法的性能的影响。在第三阶段,研究了由二倍体在基因型上引入并由表型的适应性控制机制维持的多样性水平。在第四阶段,进行测试以检查所选方法针对不同突变率的鲁棒性。当前,支配性改变机制可以应用于二元或多等位基因离散表示,并且通过执行测试获得了有希望的结果。

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