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A BRKGA-DE algorithm for parallel-batching scheduling with deterioration and learning effects on parallel machines under preventive maintenance consideration

机译:BRKGA-DE算法,在考虑预防性维护的情况下,对并行计算机具有恶化和学习影响的并行批处理调度

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This paper introduces a parallel-batching scheduling problem with deterioration and learning effects on parallel machines, where the actual processing time of a job is subject to the phenomena of deterioration and learning. All jobs are first divided into different parallel batches, and the processing time of the batches is equal to the largest processing time of their belonged jobs. Then, the generated batches are assigned to parallel machines to be processed. Motivated by the characteristics of machine maintenance activities in a semiconductor manufacturing process, we take the machine preventive maintenance into account, i.e., the machine should be maintained after a fixed number of batches have been completed. In order to solve the problem, we analyze several structural properties with respect to the batch formation and sequencing. Based on these properties, a hybrid BRKGA-DE algorithm combining biased random-key genetic algorithm (BRKGA) and Differential Evolution (DE) is proposed to solve the parallel-batching scheduling problem. A series of computational experiments is conducted to demonstrate the effectiveness and efficiency of the proposed algorithm.
机译:本文介绍了一种并行且变质的调度问题,该问题在并行机上具有退化和学习效果,其中作业的实际处理时间受退化和学习现象的影响。首先将所有作业分为不同的并行批次,并且批次的处理时间等于其所属作业的最大处理时间。然后,将生成的批次分配给并行机器进行处理。根据半导体制造过程中机器维护活动的特点,我们考虑到机器的预防性维护,即在完成一定数量的批次后应对机器进行维护。为了解决该问题,我们分析了有关批生产和排序的几种结构特性。基于这些特性,提出了一种结合有偏随机密钥遗传算法(BRKGA)和差分进化算法(DE)的混合BRKGA-DE算法来解决并行调度问题。进行了一系列的计算实验,以证明该算法的有效性和效率。

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