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Optimum design of run-flat tire insert rubber by genetic algorithm

机译:基于遗传算法的防爆轮胎橡胶优化设计。

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摘要

A generalized multi-objective optimization method making use of genetic algorithm (GA) is introduced, in order to simultaneously improve the riding comfort and the durability of run-flat tire by optimally tailoring the shape and stiffness of the sidewall insert rubber. The sensitivity analysis invoking the CPU time-consuming finite element analyses is replaced with the genetic evolution and the fitness of each genome in the population is evaluated by utilizing the response surfaces of objective functions approximated by ANN. It is confirmed through the numerical experiment that a number of Pareto solutions of the shape and stiffness of the sidewall insert rubber for different combinations of weighting factors can be successfully obtained. As well, the reliability of the Pareto solutions has been justified from the comparison with the direct finite element analysis.
机译:引入了一种利用遗传算法(GA)的广义多目标优化方法,以通过最佳地调整胎侧嵌胶的形状和刚度来同时提高行驶舒适性和缺气保用轮胎的耐久性。调用CPU耗时的有限元分析的敏感性分析将替换为遗传进化方法,并利用ANN近似的目标函数的响应面来评估种群中每个基因组的适应性。通过数值实验证实,可以成功获得针对权重因子的不同组合的胎侧胶的形状和刚度的许多帕累托解。同样,通过与直接有限元分析的比较也证明了Pareto解决方案的可靠性。

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