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An Enhanced Two-Level Metaheuristic Algorithm with Adaptive Hybrid Neighborhood Structures for the Job-Shop Scheduling Problem

机译:具有作业商店调度问题的自适应混合邻域结构增强的两级成群质算法

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For solving the job-shop scheduling problem (JSP), this paper proposes a novel two-level metaheuristic algorithm, where its upper-level algorithm controls the input parameters of its lower-level algorithm. The lower-level algorithm is a local search algorithm searching for an optimal JSP solution within a hybrid neighborhood structure. To generate each neighbor solution, the lower-level algorithm randomly uses one of two neighbor operators by a given probability. The upper-level algorithm is a population-based search algorithm developed for controlling the five input parameters of the lower-level algorithm, i.e., a perturbation operator, a scheduling direction, an ordered pair of two neighbor operators, a probability of selecting a neighbor operator, and a start solution-representing permutation. Many operators are proposed in this paper as options for the perturbation and neighbor operators. Under the control of the upper-level algorithm, the lower-level algorithm can be evolved in its input-parameter values and neighborhood structure. Moreover, with the perturbation operator and the start solution-representing permutation controlled, the two-level metaheuristic algorithm performs like a multistart iterated local search algorithm. The experiment’s results indicated that the two-level metaheuristic algorithm outperformed its previous variant and the two other high-performing algorithms in terms of solution quality.
机译:为了解决作业商店调度问题(JSP),本文提出了一种新型的两级成群质算法,其上层算法控制其较低级别算法的输入参数。较低级别算法是在混合邻域结构中寻找最佳JSP解决方案的本地搜索算法。为了生成每个邻接解决方案,较低级别算法随机使用两个邻居运营商中的一个给定概率。上层算法是一种基于群体的搜索算法,用于控制较低级别算法的五个输入参数,即扰动运算符,调度方向,有序对两个邻居运算符,选择邻居的概率操作员,以及启动解决方案排列。本文提出了许多运营商作为扰动和邻居运营商的选项。在上层算法的控制下,较低级别算法可以在其输入参数值和邻域结构中演变。此外,利用扰动运算符和启动解决方案的置换控制,双层成帧算法类似于多级迭代本地搜索算法。实验结果表明,两级的成群质算法在解决方案质量方面优于其先前的变体和两种其他高性能算法。

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