Algorithms for three-machine flowshop scheduling problem to minimize makespan with uncertain processing times

A. Allahverdi, Muberra Allahverdi
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Abstract

We address the three-machine flowshop scheduling problem to minimize makespan where processing times are uncertain within some lower and upper bounds. We propose sixteen algorithms based on Johnson's algorithm, which is known to yield the optimal solution for the three-machine flowshop problem under certain cases. The proposed algorithms are computationally evaluated based on randomly generated data. Computational experiments indicate that one of the proposed algorithms, algorithm AL-7, significantly performs better than the rest. Tests of hypotheses were performed to statistically confirm the results. In algorithm AL-7, more weight is given to the processing times of jobs on the first and the third machines compared to those of the second machine. Moreover, both the lower and upper bounds of job processing times on all three machines are utilized. Furthermore, algorithm AL-7 is shown to perform the best regardless of the extreme distributions considered. Hence, it is recommended as the best algorithm.
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加工时间不确定条件下最小化完工时间的三机流水车间调度算法
我们解决了三机器流水车间调度问题,以最小化最大完工时间,其中加工时间在某些上下界限内是不确定的。我们提出了16种基于Johnson算法的算法,该算法已知在某些情况下产生三机流水车间问题的最优解。基于随机生成的数据对所提出的算法进行了计算评估。计算实验表明,其中一种算法AL-7的性能明显优于其他算法。进行假设检验以统计证实结果。在AL-7算法中,与第二机器相比,第一机器和第三机器上的作业处理时间更重要。此外,还利用了所有三台机器上的作业处理时间的上限和下限。此外,无论考虑的极端分布如何,AL-7算法都表现得最好。因此,它被推荐为最佳算法。
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Erratum to: On interval-valued bilevel optimization problems using upper convexificators On the conformability of regular line graphs A new modified bat algorithm for global optimization A multi-stage stochastic programming approach for an inventory-routing problem considering life cycle On characterizations of solution sets of interval-valued quasiconvex programming problems
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