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A genotype-phenotype-fitness assessment protocol for evolutionary self-assembly Wang tiles design

机译:进化自组装Wang tile设计的基因型-表型适应性评估方案

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In a previous work we have reported on the evolutionary design optimisation of self-assembling Wang tiles capable of arranging themselves together into a target structure. Apart from the significant findings on how self-assembly is achieved, nothing has been yet said about the efficiency by which individuals were evolved. Specially in light that the mapping from genotype to phenotype and from this to fitness is clearly a complex, stochastic and non-linear relationship. One of the most common procedures would suggest running many experiments for different configurations followed by a fitness comparison, which is not only time-consuming but also inaccurate for such intricate mappings. In this paper we aim to report on a complementary dual assessment protocol to analyse whether our genetic algorithm, using morphological image analyses as fitness function, is an effective methodology. Thus, we present here fitness distance correlation to measure how effectively the fitness of an individual correlates to its genotypic distance to a known optimum, and introduce clustering as a mechanism to verify how the objective function can effectively differentiate between dissimilar phenotypes and classify similar ones for the purpose of selection.
机译:在先前的工作中,我们报告了自组装式Wang瓷砖的进化设计优化,该设计可将自身布置在一起成为目标结构。除了关于如何实现自我组装的重要发现之外,关于个体进化的效率还没有任何评论。特别地,鉴于从基因型到表型以及从基因型到适应性的映射显然是复杂,随机和非线性的关系。最常见的过程之一是建议针对不同的配置运行许多实验,然后进行适应性比较,这不仅费时,而且对于这种复杂的映射也不准确。在本文中,我们旨在报告一种互补的双重评估协议,以分析我们的遗传算法是否将形态学图像分析作为适应度函数,是一种有效的方法。因此,我们在这里提出适应度距离相关性,以衡量一个人的适应性与其基因型距离如何有效地相关到一个已知的最佳值,并引入聚类作为一种机制,以验证目标函数如何有效区分不同的表型并对这些表型进行分类。选择的目的。

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