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Comparisons between drum-buffer-rope and material requirements planning: a case study

机译:鼓式缓冲绳和物料需求计划之间的比较:一个案例研究

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Drum-Buffer-Rope (DBR) is an alternative approach to manufacturing planning and control that is not as formally tested as Material Requirements Planning (MRP) systems which have traditionally been around for years. Yet, some reports indicate very good performance for DBR and the associated use of synchronous manufacturing principles. But how do these systems compare and relate to one another? Based on our experiences of studying a Bearing Manufacturing Company that actually made the transition from an MRP system to a DBR system, we conduct simulation-based experiments in this paper with the objective of providing a more formal comparison between these two systems than what has been offered in prior literature. To our knowledge, this is the only study of its kind that uses a real-world setting to evaluate key differences and convergence points between comprehensive MRP and DBR systems. Our results show that even though the MRP and DBR systems position inventory differently and provide different dynamic responses to customer demand, there are several operating policies that can be implemented in either system. While the DBR performance in our simulation model was clearly superior to a nominal MRP implementation, we show that even within the constraints of the structural design of MRP system, policy modification based on DBR principles can significantly reduce these performance differences. This finding has an important implication for practising managers who need not necessarily switch from a MRP system to a DBR type of a system (as was done by our case-study firm) in order to take advantage of attractive features of the DBR system. Future researchers can use our study to understand more fully how these Structural Design and Operating Policy differences can be further exploited to implement unique systems that combine the best features of both DBR and MRP systems.
机译:鼓式缓冲绳(DBR)是制造计划和控制的替代方法,没有像传统上已经存在多年的材料需求计划(MRP)系统那样经过正式测试。但是,一些报告表明DBR以及与之相关的同步制造原理的使用具有非常好的性能。但是这些系统如何比较并相互关联?基于我们对实际从MRP系统过渡到DBR系统的轴承制造公司的研究经验,我们在本文中进行了基于仿真的实验,目的是提供这两种系统之间比以前更正式的比较。在以前的文献中提供。据我们所知,这是同类研究中唯一使用现实环境评估综合MRP和DBR系统之间的关键差异和收敛点的研究。我们的结果表明,即使MRP和DBR系统对存货的位置有所不同,并且对客户需求提供了不同的动态响应,但是在这两个系统中都可以实施几种操作策略。尽管我们的仿真模型中的DBR性能明显优于标称MRP实现,但我们表明,即使在MRP系统结构设计的约束下,基于DBR原理的策略修改也可以显着减少这些性能差异。这一发现对那些为了利用DBR系统的吸引人的功能而不必从MRP系统切换到DBR类型的系统(由我们的案例研究公司所做的)的管理人员具有重要的意义。未来的研究人员可以使用我们的研究来更全面地了解如何进一步利用这些结构设计和操作策略的差异来实现结合了DBR和MRP系统的最佳功能的独特系统。

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