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MIP Models and Hybrid Algorithms for Simultaneous Job Splitting and Scheduling on Unrelated Parallel Machines

机译:在无关并行机上同时进行作业分割和调度的MIP模型和混合算法

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摘要

We developed mixed integer programming (MIP) models and hybrid genetic-local search algorithms for the scheduling problem of unrelated parallel machines with job sequence and machine-dependent setup times and with job splitting property. The first contribution of this paper is to introduce novel algorithms which make splitting and scheduling simultaneously with variable number of subjobs. We proposed simple chromosome structure which is constituted by random key numbers in hybrid genetic-local search algorithm (GAspLA). Random key numbers are used frequently in genetic algorithms, but it creates additional difficulty when hybrid factors in local search are implemented. We developed algorithms that satisfy the adaptation of results of local search into the genetic algorithms with minimum relocation operation of genes' random key numbers. This is the second contribution of the paper. The third contribution of this paper is three developed new MIP models which are making splitting and scheduling simultaneously. The fourth contribution of this paper is implementation of the GAspLAMIP. This implementation let us verify the optimality of GAspLA for the studied combinations. The proposed methods are tested on a set of problems taken from the literature and the results validate the effectiveness of the proposed algorithms.
机译:我们针对具有作业序列和与机器相关的建立时间以及具有作业拆分属性的无关并行机器的调度问题,开发了混合整数规划(MIP)模型和混合遗传-局部搜索算法。本文的第一篇贡献是介绍了新颖的算法,该算法可同时对可变数量的子作业进行拆分和调度。我们提出了一种简单的染色体结构,该结构由杂种遗传-局部搜索算法(GAspLA)中的随机关键字构成。遗传算法中经常使用随机密钥号,但是当在本地搜索中实现混合因子时,它会增加难度。我们开发了一种算法,该算法可以以最小的基因随机键数重新定位操作满足遗传算法对本地搜索结果的适应性。这是本文的第二个贡献。本文的第三点贡献是三个同时开发的新MIP模型,它们同时进行拆分和调度。本文的第四个贡献是GAspLAMIP的实施。这种实现方式让我们验证了GAspLA对于所研究组合的最优性。对提出的方法进行了一系列从文献中得出的问题的测试,结果验证了提出算法的有效性。

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  • 期刊名称 other
  • 作者单位
  • 年(卷),期 -1(2014),-1
  • 年度 -1
  • 页码 519520
  • 总页数 19
  • 原文格式 PDF
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