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An improved simulated annealing for hybrid flowshops with sequence-dependent setup and transportation times to minimize total completion time and total tardiness

机译:针对混合流水车间的改进的模拟退火,其顺序依赖的设置和运输时间可最大程度地减少总完成时间和总拖延时间

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摘要

In this communication, we strive to apply a novel simulated annealing to consider scheduling hybrid flowshop problems to minimize both total completion time and total tardiness. To narrow the gap between the theory and the practice of the hybrid flowshop scheduling, we integrate two realistic and practical assumptions which are sequence-dependent setup and transportation times into our problem. We apply a metaheuristic based on simulated annealing (SA) which strikes a compromise between intensification and diversification mechanisms to augment the competitive performance of our proposed SA. A comprehensive calibration of different parameters and operators are done. We employ Taguchi method to select the optimum parameters with the least possible number of experiments. For the purpose of performance evaluation of our proposed algorithm, we generate a benchmark against which the adaptations of high performing algorithms in the literature are brought into comparison. Moreover, we investigate the impacts of increase of number of jobs on the performance of our algorithm. The efficiency and effectiveness of our hybrid simulated annealing are inferred from all the computational results obtained in various situations.
机译:在这种交流中,我们努力应用一种新颖的模拟退火方法来考虑调度混合Flowshop问题,以最大程度地减少总完成时间和总拖延时间。为了缩小混合流水车间调度理论与实践之间的差距,我们将两个实际和实际的假设(与序列相关的设置和运输时间)整合到我们的问题中。我们应用基于模拟退火(SA)的元启发式方法,该方法在强化机制和多元化机制之间达成折衷,以增强我们提出的SA的竞争性能。完成了对不同参数和操作员的全面校准。我们采用田口方法以最少的实验次数来选择最佳参数。为了评估我们提出的算法的性能,我们生成了一个基准,将文献中高性能算法的适应性与之进行了比较。此外,我们调查了作业数量增加对算法性能的影响。从各种情况下获得的所有计算结果可以推断出我们的混合模拟退火的效率和有效性。

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