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Extracting priority rules for dynamic multi-objective flexible job shop scheduling problems using gene expression programming

机译:使用基因表达程序提取动态多目标柔性作业车间调度问题的优先级规则

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In this paper, two new approaches are proposed for extracting composite priority rules for scheduling problems. The suggested approaches use simulation and gene expression programming and are able to evolve specific priority rules for all dynamic scheduling problems in accordance with their features. The methods are based on the idea that both the proper design of the function and terminal sets and the structure of the gene expression programming approach significantly affect the results. In the first proposed approach, modified and operational features of the scheduling environment are added to the terminal set, and a multigenic system is used, whereas in the second approach, priority rules are used as automatically defined functions, which are combined with the cellular system for gene expression programming. A comparison shows that the second approach generates better results than the first; however, all of the extracted rules yield better results than the rules from the literature, especially for the defined multi-objective function consisting of makespan, mean lateness and mean flow time. The presented methods and the generated priority rules are robust and can be applied to all real and large-scale dynamic scheduling problems.
机译:本文提出了两种新的方法来提取调度问题的复合优先级规则。建议的方法使用仿真和基因表达编程,并且能够根据其特征针对所有动态调度问题发展特定的优先级规则。这些方法基于这样的思想,即功能和末端集的正确设计以及基因表达编程方法的结构都会显着影响结果。在第一种方法中,将调度环境的修改和操作功能添加到终端机中,并使用了多基因系统,而在第二种方法中,将优先级规则用作自动定义的功能,并与蜂窝系统结合使用用于基因表达编程。比较表明,第二种方法比第一种方法产生更好的结果。但是,所有提取的规则都比文献中的规则产生更好的结果,特别是对于定义的由制造时间,平均延迟和平均流动时间组成的多目标函数。所提出的方法和所产生的优先级规则是鲁棒的,并且可以应用于所有实际的和大规模的动态调度问题。

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