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AN ALTERNATIVE MEASUREMENT OF THE ENTROPY EVOLUTION OF A GENETIC ALGORITHM

机译:遗传算法熵演化的替代测量

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In a genetic algorithm, fluctuations of the entropy of a genome over time are interpreted as fluctuations of the information that the genome's organism is storing about its environment, being this reflected in more complex organisms. The computation of this entropy presents technical problems due to the small population sizes used in practice. In this work we propose and test an alternative way of measuring the entropy variation in a population by means of algorithmic information theory, where the entropy variation between two generational steps is the Kolmogorov complexity of the first step conditioned to the second one. We also report experimental differences in entropy evolution between systems in which sexual reproduction is present or absent.
机译:在遗传算法中,随着时间的推移,基因组的熵的波动被解释为基因组的生物在其环境中储存的信息的波动,这反映在更复杂的生物体中。由于实践中使用的小于人口尺寸,这种熵的计算具有技术问题。在这项工作中,我们提出并测试通过算法信息理论测量群体中熵变化的替代方法,其中两个世代步骤之间的熵变化是调节第二步骤的第一步的kolmogorov复杂度。我们还报告了在存在性繁殖的系统之间熵演变的实验差异。

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