消光环优化

D. Ashlock, Sierra Gillis, G. Fogel
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引用次数: 4

摘要

灭绝是推动生物进化的自然过程。研究了消光算子对环优化的影响。环形优化器是受环形物种生物现象启发的空间结构进化优化器。在环形结构的空间中引入一个小的初始种群并进行扩展,利用空间结构来管理算法的探索/开发权衡。灭绝算子消除了当前种群的很大一部分,实际上将算法重新设置为更具探索性的状态。对两种消光算子进行了测试和比较。“洪水算子”移除适应度较低的种群成员,而“小行星算子”移除环中相邻块中的种群成员。使用了三个基准函数,一个是离散模拟函数,另两个是开放式连续实函数。消光算子的行为对每个基准函数都是不同的。消光算子的行为差异是根据基准函数的适应度景观来解释的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ring optimization with extinction
Extinction is a natural process that drives biological evolution. In this study the impact of introducing extinction operators into ring optimization was examined. Ring optimizers are spatially structured evolutionary optimizers inspired by the biological phenomenon of a ring species. A small initial population is introduced into a ring-structured space and spreads, using the spatial structure to manage the exploration/exploitation trade-off of the algorithm. Extinction operators eliminate a substantial fraction of the current population, in effect resetting the algorithm to a more exploratory state. Two types of extinction operators are tested and compared. The “deluge operator” removes population members with lower fitness while the “asteroid operator” removes population members in a contiguous block of the ring. Three benchmark functions were used, one a discrete simulation and the other two open-ended continuous real functions. The behavior of the extinction operators are different for each of the benchmark functions. The differences in behavior of the extinction operators are explained in terms of the fitness landscapes of the benchmark functions.
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