论文标题

表观遗传阻断对动态多目标优化问题的影响

The Effect of Epigenetic Blocking on Dynamic Multi-Objective Optimisation Problems

论文作者

Yuen, Sizhe, Ezard, Thomas H. G., Sobey, Adam J.

论文摘要

已经报道了数百种进化计算方法。从进化的角度来看,他们着重于两种基本机制:群智力和进化算法中遗传遗传的文化遗传。当代进化生物学的外观超出了遗传遗传,提出了所谓的``扩展进化综合''。由于兴趣已转向相同的一般机制的特定实现,因此扩展进化综合的许多概念已被遗漏了进化计算。这样的概念是表观遗传遗传,它被越来越被认为是进化思维的核心。表观遗传机制允许快速非或部分遗传适应环境变化。动态的多目标优化问题代表与自然世界相似的情况,在自然世界中,健身可以由多个目标(特征)决定,并且环境正在不断变化。 本文询问自然世界中表观遗传遗传提供的优势是否在动态多目标优化问题中复制。具体而言,将表观遗传阻断机制应用于最先进的多目标遗传算法MOEA/D-DE,并在三组动态测试功能(FDA,JY和UDF)上比较其性能。该机制显示在16个测试问题中的12个中的性能提高,提供了最初的证据,表明更多算法应探索自然界中看到的各种表观遗传机制。

Hundreds of Evolutionary Computation approaches have been reported. From an evolutionary perspective they focus on two fundamental mechanisms: cultural inheritance in Swarm Intelligence and genetic inheritance in Evolutionary Algorithms. Contemporary evolutionary biology looks beyond genetic inheritance, proposing a so-called ``Extended Evolutionary Synthesis''. Many concepts from the Extended Evolutionary Synthesis have been left out of Evolutionary Computation as interest has moved toward specific implementations of the same general mechanisms. One such concept is epigenetic inheritance, which is increasingly considered central to evolutionary thinking. Epigenetic mechanisms allow quick non- or partially-genetic adaptations to environmental changes. Dynamic multi-objective optimisation problems represent similar circumstances to the natural world where fitness can be determined by multiple objectives (traits), and the environment is constantly changing. This paper asks if the advantages that epigenetic inheritance provide in the natural world are replicated in dynamic multi-objective optimisation problems. Specifically, an epigenetic blocking mechanism is applied to a state-of-the-art multi-objective genetic algorithm, MOEA/D-DE, and its performance is compared on three sets of dynamic test functions, FDA, JY, and UDF. The mechanism shows improved performance on 12 of the 16 test problems, providing initial evidence that more algorithms should explore the wealth of epigenetic mechanisms seen in the natural world.

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