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Differential Evolution Enhanced With Multiobjective Sorting-Based Mutation Operators

机译:基于多目标排序的变异算子增强了差分进化

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摘要

Differential evolution (DE) is a simple and powerful population-based evolutionary algorithm. The salient feature of DE lies in its mutation mechanism. Generally, the parents in the mutation operator of DE are randomly selected from the population. Hence, all vectors are equally likely to be selected as parents without selective pressure at all. Additionally, the diversity information is always ignored. In order to fully exploit the fitness and diversity information of the population, this paper presents a DE framework with multiobjective sorting-based mutation operator. In the proposed mutation operator, individuals in the current population are firstly sorted according to their fitness and diversity contribution by nondominated sorting. Then parents in the mutation operators are proportionally selected according to their rankings based on fitness and diversity, thus, the promising individuals with better fitness and diversity have more opportunity to be selected as parents. Since fitness and diversity information is simultaneously considered for parent selection, a good balance between exploration and exploitation can be achieved. The proposed operator is applied to original DE algorithms, as well as several advanced DE variants. Experimental results on 48 benchmark functions and 12 real-world application problems show that the proposed operator is an effective approach to enhance the performance of most DE algorithms studied.
机译:差分进化(DE)是一种简单而强大的基于种群的进化算法。 DE的显着特征在于其突变机制。通常,从群体中随机选择DE的突变算子的父母。因此,所有载体都可能完全没有选择压力地被选为亲本。另外,总会忽略分集信息。为了充分利用种群的适应度和多样性信息,提出了一种基于多目标排序的变异算子的DE框架。在提出的突变算子中,首先通过非支配排序根据当前人口的适合度和多样性贡献对其进行排序。然后,根据适应度和多样性,按照其排名按比例选择变异算子的亲本,因此,适应性和多样性更好的有前途的人有更多的机会被选为亲本。由于适合父母选择的同时考虑了适应性和多样性信息,因此可以在探索和剥削之间实现良好的平衡。提议的算子适用于原始DE算法以及几种高级DE变体。在48个基准函数和12个实际应用问题上的实验结果表明,所提出的算子是提高大多数DE算法性能的有效方法。

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