Scheduling of sequence-dependant jobs on parallel multiprocessor systems using a branch and bound-based Petri net

Abolfazl Jalilvand, S. Khanmohammadi, F. Shabaninia
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引用次数: 11

Abstract

This paper presents a new branch-and-bound algorithm for minimizing the make-span of a job-shop scheduling problem where n jobs must be scheduled on m machines. It is assumed that the jobs are available at time zero and have sequence-dependent setup times on machines. For solving the scheduling problem we develop a new branch and bound system which constructs its search tree gradually and does not need a large size memory. An upper-bound cost (UBC) is introduced to initialize the root node in search tree which reduces Branch and Bound computations. For modeling the manufacturing system and applying the desired sequence-dependent schedule on it, a supervisor Petri net is introduced. The proposed methods are verified through a computational experiment
并行多处理器系统中基于分支和边界的Petri网的顺序相关作业调度
针对m台机器上有n个作业的作业车间调度问题,提出了一种新的分支定界算法。假设作业在零时可用,并且在机器上具有与序列相关的设置时间。为了解决调度问题,我们开发了一种新的分支定界系统,该系统逐步构建其搜索树,并且不需要大容量的内存。引入上界代价(UBC)来初始化搜索树的根节点,减少了分支和边界的计算。为了对制造系统建模并在其上应用期望的序列相关调度,引入了监督Petri网。通过计算实验验证了所提方法的正确性
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