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An Exploratory Study of Batch Splitting through Combined Control of Release and Dispatching

机译:通过释放和调度的联合控制进行批次拆分的探索性研究

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Workload Control (WLC) has been developed as a production planning and control approach for make-to-order manufacturing. Previous studies on WLC often assume a simplified shop where released batches are treated as independent jobs, which proceed through the different stages of processing without being split. Batch splitting allows released batches to be split into a number of smaller sub-batches so that its operations at work centres can be overlapped and its progress accelerated. This paper investigates how WLC performs under batch splitting. Evaluating the performance of WLC in this context is an important step towards the alignment between WLC theory and practice. Thus, assuming a production situation with unbalanced utilizations of manufacturing resources, the effectiveness of different dispatching rules and job release strategies are examined using simulation. Results highlight the importance of controlled release of jobs to the shop floor and the importance of differentiating between bottleneck and non-bottleneck work centres for purpose of dispatching.
机译:工作量控制(WLC)已开发为按订单生产的生产计划和控制方法。以前有关WLC的研究通常假设车间是简化的,已下达的批处理被视为独立的工作,这些工作会经过处理的不同阶段而不会被拆分。批次拆分允许将已下达的批次拆分为多个较小的子批次,以便其在工作中心的操作可以重叠并且可以加快进度。本文研究了WLC在批量拆分下的性能。在这种情况下,评估WLC的性能是迈向WLC理论与实践保持一致的重要一步。因此,假设生产状况中制造资源的使用不平衡,则使用模拟来检查不同调度规则和工作释放策略的有效性。结果突出了将作业有控制地释放到车间的重要性,以及区分瓶颈和非瓶颈工作中心以进行调度的重要性。

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