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Iterated local search for single-machine scheduling with sequence-dependent setup times to minimize total weighted tardiness

机译:迭代本地搜索,用于单机调度,并具有与序列相关的设置时间,以最大程度地减少总加权拖延时间

摘要

We present an Iterated Local Search (ILS) algorithm for solving the single-machine scheduling problem with sequence-dependent setup times to minimize the total weighted tardiness. The proposed ILS algorithm exhibits several distinguishing features, including a new neighborhood structure called Block Move and a fast incremental evaluation technique, for evaluating neighborhood solutions. Applying the proposed algorithm to solve 120 public benchmark instances widely used in the literature, we achieve highly competitive results compared with a recently proposed exact algorithm and five sets of best solutions of state-of-the-art metaheuristic algorithms in the literature. Specifically, ILS obtains the optimal solutions for 113 instances within a reasonable time, and it outperforms the previous best-known results obtained by metaheuristic algorithms for 34 instances and matches the best results for 82 instances. In addition, ILS is able to obtain the optimal solutions for the remaining seven instances under a relaxed time limit, and its computational efficiency is comparable with the state-of-the-art exact algorithm by Tanaka and Araki (Comput Oper Res 40:344-352, 2013). Finally, on analyzing some important features that affect the performance of ILS, we ascertain the significance of the proposed Block Move neighborhood and the fast incremental evaluation technique.
机译:我们提出了一种迭代局部搜索(ILS)算法,用于解决单机调度问题,该问题具有与序列相关的设置时间,以最大程度地减少总加权拖延时间。提出的ILS算法具有几个显着特征,包括称为邻域移动的新邻域结构和用于评估邻域解的快速增量评估技术。通过将所提出的算法用于解决文献中广泛使用的120个公共基准实例,与最近提出的精确算法和文献中的五组最新元启发式算法的最佳解决方案相比,我们获得了极具竞争力的结果。具体来说,ILS在合理的时间内获得了113个实例的最佳解决方案,它的性能优于以前通过元启发式算法获得的34个实例的最佳结果,并且匹配了82个实例的最佳结果。此外,ILS能够在宽松的时间限制内为其余七个实例获得最佳解决方案,并且其计算效率可与Tanaka和Araki的最新精确算法相提并论(Comput Oper Res 40:344 -352,2013年)。最后,在分析影响ILS性能的一些重要特征时,我们确定了提出的块移动邻域和快速增量评估技术的重要性。

著录项

  • 作者

    Xu H; L? Z; Cheng TCE;

  • 作者单位
  • 年度 2014
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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