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A TWO-STAGE SOLUTION APPROACH FOR PLASTIC INJECTION MACHINES SCHEDULING PROBLEM

机译:塑料注塑机调度问题的两级解决方案方法

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摘要

One of the most common plastic manufacturing methods is injection molding. In injection molding process, scheduling of plastic injection machines is very difficult because of the complex nature of the problem. For example, similar plastic parts should be produced sequentially to prevent long setup times. On the other hand, to produce a plastic part, its mold should be fixed on an injection machine. Machine eligibility restrictions should be considered because a mold can be usually fixed on a subset of the injection machines. Some plastic parts which have same shapes but different colors are used same mold so these parts can only be scheduled simultaneously if their mold has copies, otherwise resource constraints should be considered. In this study, a multi-objective mathematical model is proposed for parallel machine scheduling problem to minimize makespan, total tardiness, and total waiting time. Since NP-hard nature of problem, this paper presents a two-stage mathematical model and a two-stage solution approach. In the first stage of mathematical model, jobs are assigned to the machines and each machine is scheduled separately in the second stage. The integrated model and two-stage mathematical model are scalarized by using goal programming, compromise programming and Lexicographic Weighted Tchebycheff programming methods. To solve large-scale problems in a short time, a two-stage solution approach is also proposed. In the first stage of this approach, jobs are assigned to machines and scheduled by using proposed simulated annealing algorithm. In the second stage of the approach, starting time, completion time and waiting time of the jobs are calculated by using a mathematical model. The performance of the methods is demonstrated on randomly generated test problems.
机译:最常见的塑料制造方法之一是注塑成型。在注塑成型过程中,由于问题的复杂性,塑料注入机器的调度非常困难。例如,应顺序生产类似的塑料部件以防止长度设置。另一方面,为了生产塑料部件,其模具应固定在注射机上。应考虑机器资格限制,因为模具通常可以固定在喷射机器的子集上。一些具有相同形状但不同颜色的塑料部件相同的模具,因此如果它们的模具具有副本,则只能同时调度这些部件,否则应考虑资源约束。在这项研究中,提出了一种多目标数学模型,用于并行机器调度问题,以最大限度地减少Mapspan,总迟到和总等待时间。由于NP-HARD的问题,本文提出了一种两级数学模型和两级解决方案方法。在数学模型的第一阶段中,作业被分配给机器,并且每台机器在第二阶段分开安排。通过使用目标编程,危及编程和词典加权Tchebefcheff编程方法来标定集成模型和两级数学模型。为了在短时间内解决大规模问题,还提出了一种两级解决方案方法。在这种方法的第一阶段中,作业被分配给机器并通过使用所提出的模拟退火算法来预定。在方法的第二阶段,通过使用数学模型来计算作业的开始时间,完成时间和等待时间。对随机生成的测试问题进行了说明该方法的性能。

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