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Global optimization of reliability design for large ball mill gear transmission based on the Kriging model and genetic algorithm

机译:基于Kriging模型和遗传算法的大型球磨机齿轮传动可靠性设计的全局优化

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摘要

This paper aims to improve the global optimization operation efficiency in engineering by establishing the Kriging model to simplify the calculated mathematics model. In the case of the large ball mill, this paper presents in detail the application of the stress-strength distribution interference theory to calculate the reliability of gear transmission, establishes the Kriging model for function fitting, and uses genetic algorithm to globally optimize the volume and reliability of large ball mill gear transmission. The optimal result based the Kriging model is contrasted with the Monte Carlo Method in terms of calculation accuracy, greatly improving the efficiency of calculation.
机译:本文旨在通过建立Kriging模型来简化计算的数学模型,从而提高工程中的全局优化运营效率。对于大型球磨机,本文详细介绍了应力-强度分布干涉理论在计算齿轮传动可靠性方面的应用,建立了用于功能拟合的Kriging模型,并使用遗传算法全局优化了体积和大型球磨机齿轮传动的可靠性。在计算精度方面,将基于克里格模型的最优结果与蒙特卡洛方法进行了对比,大大提高了计算效率。

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