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Craft Parameters Optimization of Melt-Transportation in Polyester Fiber Production Based on Improved RVEA

机译:基于改进RVEA的聚酯纤维熔体输送工艺参数优化

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Melt-transportation is an important process in polyester fiber production containing multiple production processes and complicated structure, its craft parameters are set generally based on engineer's experience. Multi-objective optimization is proved to be an efficient method for such problems. And we built a five-objective optimization model based on five performance indicators of melt-transportation process to optimize the craft parameters. Due to the increase of the objectives' dimensions, algorithms based on non-dominated relationship cannot select individuals with good convergence and diversity for the population. Therefore, we improve the angle penalized functions of RVEA, where we adjust the penalized functions according to the diversity of the current population. The experiment results show that the improved RVEA performs competitively compared with the more challenging SDTLZ1-SDTLZ4 test suite based on DTLZ series, and the result of melt-transportation optimization is of guiding value for polyester fiber production.
机译:熔体运输是聚酯纤维生产中的一个重要过程,包含多个生产过程和复杂的结构,其工艺参数通常根据工程师的经验来设置。事实证明,多目标优化是解决此类问题的有效方法。并基于熔体输送过程的五个性能指标,建立了五目标优化模型,以优化工艺参数。由于目标维度的增加,基于非支配关系的算法无法为总体选择具有良好收敛性和多样性的个体。因此,我们改进了RVEA的角度惩罚函数,在此我们根据当前总体的多样性来调整惩罚函数。实验结果表明,改进后的RVEA与更具挑战性的基于DTLZ系列的SDTLZ1-SDTLZ4测试套件相比具有竞争优势,并且熔体运输优化的结果对聚酯纤维的生产具有指导意义。

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