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Optimising workload norms: The influence of shop floor characteristics on setting workload norms for the workload control concept

机译:优化工作负载规范:车间特征对工作负载控制概念的设置工作负载规范的影响

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摘要

Workload control (WLC) is a leading production planning and control (PPC) solution for small to medium sized enterprises (SMEs) and make-to-order (MTO) companies, but when WLC is implemented, practitioners find it difficult to determine suitable workload norms to obtain optimum performance. Theory has provided some solutions (e.g., based on linear programming) but, to remain optimal, these require the regular feedback of detailed information from the shop floor about the status of work-in-process (WIP), and are therefore often impractical. This paper seeks to predict workload norms without such feedback requirements, analysing the influence of shop floor characteristics on the workload norm. The shop parameters considered are flow characteristics (from an undirected pure job shop to a directed general flow shop), and the number of possible work centres in the routing of a job (i.e., the routing length). Using simulation and optimisation software, the workload norm resulting in optimum performance is determined for each work centre for two aggregate load-oriented WLC approaches: the classical and corrected load methods. Results suggest that the performance of the classical approach is heavily affected by shop floor characteristics but no direct relationship between the characteristics and norm to apply could be established. In contrast, results suggest that the performance of the corrected load approach is not influenced by shop floor characteristics and the workload norm which results in optimum performance is the same for all experiments. Given the changing nature of MTO production and the difficulties encountered with the classical approach, the corrected load approach is considered a better and more robust option for implementation in practice. Future simulations should investigate the influence of differing capacities across work centres on the workload norm while action research should be conducted to apply the findings in practice.
机译:工作量控制(WLC)是面向中小型企业(SME)和按订单生产(MTO)公司的领先的生产计划和控制(PPC)解决方案,但是实施WLC后,从业人员发现很难确定合适的工作量规范以获得最佳性能。理论上已经提供了一些解决方案(例如基于线性规划),但是要保持最佳状态,这些解决方案需要定期反馈车间有关在制品(WIP)状态的详细信息,因此通常不切实际。本文试图在没有这种反馈要求的情况下预测工作量规范,分析车间特征对工作量规范的影响。所考虑的车间参数是流程特征(从无方向的纯作业车间到定向的一般流程车间),以及在作业路由中可能的工作中心数量(即路由长度)。使用仿真和优化软件,针对每个工作中心,针对两种面向负载的总体WLC方法(经典和修正的负载方法)确定了导致最佳性能的工作量范数。结果表明,经典方法的性能在很大程度上受车间特征的影响,但无法建立特征与适用规范之间的直接关系。相反,结果表明,校正载荷方法的性能不受车间特征的影响,并且导致最佳性能的工作负荷规范在所有实验中均相同。考虑到MTO生产的性质不断变化以及传统方法遇到的困难,校正后的负荷方法被认为是在实践中实施的更好,更可靠的选择。未来的模拟应调查工作中心不同能力对工作量规范的影响,同时应进行行动研究以将发现应用于实践。

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