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A Multiobjective Hybrid Genetic Algorithm for TFT-LCD Module Assembly Scheduling

机译:TFT-LCD模块装配调度的多目标混合遗传算法

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The thin-film transistor-liquid crystal display (TFT-LCD) module assembly production is a flexible job-shop scheduling problem that is critical to satisfy the customer demands on time. On the module assembly shop floor, each workstation has identical and non-identical parallel machines that access the jobs at various processing velocities depending on the product families. To satisfy the various jobs, the machines need to be set up as the numerous tools to conduct consecutive products. This study aims to propose a novel approach to address the TFT-LCD module assembly scheduling problem by simultaneously considering the following multiple and often conflicting objectives such as the makespan, the weighted number of tardy jobs, and the total machine setup time, subject to the constraints of product families, non-identical parallel machines, and sequence-dependent setup times. In particular, we developed a multiobjective hybrid genetic algorithm (MO-HGA) that hybridizes with the variable neighborhood descent (VND) algorithm as a local search and TOPSIS evaluation technique to derive the best compromised solution. To estimate the validity of the proposed MO-HGA, experiments based on empirical data were conducted to compare the results with conventional approaches. The results have shown the validity of this approach. This study concludes with a discussion of future research directions.
机译:薄膜晶体管液晶显示器(TFT-LCD)模块组件的生产是灵活的车间调度问题,对于满足客户的按时需求至关重要。在模块装配车间,每个工作站都具有相同和不同的并行机器,这些机器可以根据产品系列以各种处理速度访问作业。为了满足各种工作,需要将机器设置为执行连续产品的众多工具。这项研究旨在提出一种新颖的方法来解决TFT-LCD模块的装配调度问题,同时考虑以下多个且经常相互冲突的目标,例如工期,加权作业的加权数量以及总的机器设置时间,具体取决于产品系列的限制,不同的并行机器以及与序列有关的设置时间。特别是,我们开发了一种多目标混合遗传算法(MO-HGA),该算法与可变邻域后裔(VND)算法杂交,作为本地搜索和TOPSIS评估技术,以得出最佳的折衷解决方案。为了评估提出的MO-HGA的有效性,进行了基于经验数据的实验,以将结果与常规方法进行比较。结果表明了该方法的有效性。本研究以对未来研究方向的讨论作为结尾。

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