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A re-entrant hybrid flow shop scheduling problem with machine eligibility constraints

机译:具有机器资格约束的可重入混合流水车间调度问题

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摘要

A production scheduling problem originating from a real rotor workshop is addressed in the paper. Given its specific characteristics, the problem is formulated as a re-entrant hybrid flow shop scheduling problem with machine eligibility constraints. A mixed integer linear programming model of the problem is provided and solved by the Cplex solver. In order to solve larger sized problems, a discrete differential evolution (DDE) algorithm with a modified crossover operator is proposed. More importantly, a new decoder addressing the machine eligibility constraints is developed and embedded to the algorithm. To validate the performance of the proposed DDE algorithm, various test problems are examined. The efficiency of the proposed algorithm is compared with two other algorithms modified from the existing ones in the literatures. A one-way ANOVA analysis and a sensitivity analysis are applied to intensify the superiority of the new decoder. Tightness of due dates and different levels of scarcity of machines subject to machine eligibility restrictions are discussed in the sensitivity analysis. The results indicate the pre-eminence of the new decoder and the proposed DDE algorithm.
机译:本文解决了源自实际转子车间的生产调度问题。鉴于其特定的特征,该问题被表述为具有机器资格约束的可重入混合流水车间调度问题。问题的混合整数线性规划模型由Cplex解算器提供并解决。为了解决较大的问题,提出了一种具有改进的交叉算子的离散差分进化算法。更重要的是,开发了一种新的解决机器资格限制的解码器,并将其嵌入到算法中。为了验证所提出的DDE算法的性能,检查了各种测试问题。将所提算法的效率与从文献中现有算法改进而来的另外两种算法进行了比较。单向方差分析和灵敏度分析被应用来增强新解码器的优越性。敏感性分析中讨论了受机器资格限制的机器的到期日紧缺程度和机器稀缺程度。结果表明了新解码器和提出的DDE算法的优越性。

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