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Size Control with Maximum Homologous Crossover

机译:大小控制,具有最大同源交叉

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摘要

Most of the Evolutionary Algorithms handling variable-sized structures, like Genetic Programming, tend to produce too long solutions and the recombination operator used is often considered to be partly responsible of this phenomenon, called bloat. The Maximum Homologous Crossover (MHC) preserves similar structures from parents by aligning them according to their homology. This operator has already demonstrated interesting abilities in bloat reduction but also some weaknesses in the exploration of the size of programs during evolution. In this paper, we show that MHC do not induce any specific biases in the distribution of sizes, allowing size control during evolution. Two different methods for size control based on MHC are presented and tested on a symbolic regression problem. Results show that an accurate control of the size is possible while improving performances of MHC.
机译:大多数进化算法处理可变大小的结构,如遗传编程,往往会产生太长的解决方案,并且使用的重组操作者通常被认为是部分地负责这种膨胀的现象。最大同源交叉(MHC)通过根据其同源性对齐它们来保护父母的类似结构。该运营商已经表现出膨胀减少的有趣能力,但在进化期间探索计划大小的一些弱点。在本文中,我们表明MHC不会在尺寸的分布中诱导任何特定的偏差,允许在进化期间尺寸控制。呈现了基于MHC的大小控制的两种不同方法,并在符号回归问题上进行了测试。结果表明,在改善MHC的性能的同时可以进行精确控制尺寸。

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