Logic-based Benders decomposition to solve the permutation flowshop scheduling problem with time lags

Imen Hamdi, T. Loukil
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引用次数: 7

Abstract

In this paper, we consider the problem of scheduling n jobs in an m-machine permutation flowshop with time lags between consecutive operations of each job. The processing order of jobs is the same for each machine. The time lag is defined as the waiting time between consecutive operations. We use logic-based Benders decomposition to minimize the total number of tardy jobs with long time horizon defined on the last machine. We combine Mixed Integer Linear programming (MILP) to allocate jobs to time intervals of the time horizon and scheduled using Constraint Programming (CP). Also, a lower bound based on Moore's algorithm is developed. Then, computational results are reported.
基于逻辑的Benders分解,解决了存在时间滞后的置换流水车间调度问题
在本文中,我们考虑了一个m-机器排列流水车间中n个作业的调度问题,每个作业的连续操作之间存在时滞。作业的处理顺序对于每台机器都是相同的。时间延迟定义为连续操作之间的等待时间。我们使用基于逻辑的Benders分解来最小化在最后一台机器上定义的长时间范围的延迟作业的总数。将混合整数线性规划(MILP)与约束规划(CP)相结合,将作业分配到时间范围内的时间间隔。同时,提出了基于摩尔算法的下界。最后给出了计算结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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