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An effective immune algorithm based on novel dispatching rules for the flexible flow-shop scheduling problem with multiprocessor tasks

机译:一种有效的基于新颖调度规则的免疫算法,解决了多处理器任务的柔性流水车间调度问题

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摘要

As a strongly NP-hard problem, the flexible flow-shop problem with multiprocessor tasks (FFSPMT) has gained much attention due to its academic significance and wide application background. To solve the FFSPMT, the dispatching rule is crucial to decode job order sequences to schedules, which has a great effect on the quality of the solution. In this paper, several novel dispatching rules are proposed to arrange the job processing order and machine assignment to minimize makespan of the FFSPMT by narrowing the idle time between the consecutive operations in the processor as well as by increasing the flexibility in selecting processors to schedule the following operations. With these rules, an immune algorithm (IA) is proposed to solve the FFSPMT, where special crossover, mutation, and vaccination operators are well designed and utilized. Meanwhile, some theoretical analysis for the local search operators is provided for guiding local search reasonably. The computational results based on 120 well-known benchmark instances and comparisons with some existing algorithms demonstrate the effectiveness of the proposed dispatching rules and the immune algorithm.
机译:作为一个强NP难题,具有多处理器任务的柔性流水车间问题(FFSPMT)由于其学术意义和广泛的应用背景而备受关注。为了解决FFSPMT,调度规则对于将作业顺序序列解码为调度表至关重要,这对解决方案的质量有很大影响。在本文中,提出了几种新颖的调度规则来安排作业处理顺序和机器分配,以通过缩小处理器中连续操作之间的空闲时间以及增加选择处理器来调度处理器的灵活性来最小化FFSPMT的制造时间。以下操作。利用这些规则,提出了一种免疫算法(IA)来解决FFSPMT,其中精心设计和利用了特殊的交叉,变异和疫苗接种算子。同时,对本地搜索算子进行了理论分析,以合理指导本地搜索。基于120个知名基准实例的计算结果以及与一些现有算法的比较证明了所提出的调度规则和免疫算法的有效性。

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