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A new orthogonal array based crossover, with analysis of gene interactions, for evolutionary algorithms and its application to car door design

机译:一种新的基于正交阵列的交叉基因分析方法,用于基因进化分析及其在车门设计中的应用

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摘要

Recent research shows that orthogonal array based crossovers outperform standard and existing crossovers in evolutionary algorithms in solving parametrical problems with high dimensions and multi-optima. However, those crossovers employed so far, ignore the consideration of interactions between genes. In this paper, we propose a method to improve the existing orthogonal array based crossovers by integrating information of interactions between genes. It is empirically shown that the proposed orthogonal array based crossover outperforms significantly both the existing orthogonal array based crossovers and standard crossovers on solving parametrical benchmark functions that interactions exist between variables. To further compare the proposed orthogonal array based crossover with the existing crossovers in evolutionary algorithms, a validation test based on car door design is used in which the effectiveness of the proposed orthogonal array based crossover is studied.
机译:最近的研究表明,在解决高维和多最优参数问题时,基于正交数组的分频器优于标准算法和现有算法中的分频器。然而,迄今为止所采用的那些交叉方法,忽略了基因之间相互作用的考虑。在本文中,我们提出了一种通过整合基因之间相互作用信息来改进现有基于正交阵列的交叉的方法。从经验上可以看出,在解决变量之间存在相互作用的参数基准函数时,所提出的基于正交数组的交叉明显优于现有的基于正交数组的交叉和标准交叉。为了进一步将提出的基于正交阵列的分频器与进化算法中现有的分频器进行比较,使用基于车门设计的验证测试,研究了提出的基于正交阵列的分频器的有效性。

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