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Incorporating a delay mechanism in ordering policies into multi-echelon distribution systems

机译:将订购策略中的延迟机制纳入多级分配系统

摘要

In this paper, we devise a framework for obtaining the optimal ordering policy in a single location, continuous-review inventory system with arbitrary inter-demand times. We show that it is optimal to order at demand arrival epochs only if the inter-demand time has a constant or decreasing failure rate. When the inter-demand time has an increasing failure rate, we show that the optimal policy is to delay the order. We then extend this policy to multi-echelon distribution systems consisting of one supplier and many retailers. Both decentralized and centralized systems are considered. We derive expressions and procedures for the evaluation of the total cost and the computation of optimal delay in all the considered settings. More importantly, we study the impact of our delay policy in all the settings. The numerical results indicate that for the single-location model, the optimal delay can significantly reduce the total cost. Results from the single-location model can be applied to the decentralized multi-echelon system, where the upstream supplier acts as a single-location system. The supplier order delay can also have a significant impact (either positive or negative) on the retailers' total cost as well as the system's total costs. Finally, the impact of supplier order delay is minimal in the centralized multi-echelon setting. We offer an intuitive explanation for this observation.
机译:在本文中,我们设计了一个框架,该框架可在单地点,连续查看的库存系统中以任意的需求时间获得最佳订购策略。我们表明,只有在需求间时间具有恒定或降低的故障率时,才最好在需求到达时期订购。当需求间时间的故障率增加时,我们表明最优策略是延迟订单。然后,我们将此政策扩展到由一个供应商和许多零售商组成的多级分销系统。分散式和集中式系统都被考虑。我们推导出用于在所有考虑的设置中评估总成本和计算最佳延迟的表达式和过程。更重要的是,我们研究了延迟策略在所有情况下的影响。数值结果表明,对于单位置模型,最佳时延可以显着降低总成本。单地点模型的结果可以应用于分散的多级系统,其中上游供应商充当单地点系统。供应商的订单延迟还可能对零售商的总成本以及系统的总成本产生重大影响(正面或负面)。最后,在集中式多级环境中,供应商订单延迟的影响最小。我们对此观察提供了直观的解释。

著录项

  • 作者

    Zhou YP; Moinzadeh K;

  • 作者单位
  • 年度 2008
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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