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Component allocation and ordering policy in a multi-component, multi-product assembled to stock system

机译:多组件,多产品组装到库存系统中的组件分配和订购策略

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This paper considers a two-echelon assembled-to-stock system, consisting of several components and products, where a periodic review policy is used. Some components are common to several products. We propose a component allocation policy that attempts to minimize the total cost which consists of the holding cost and the shortage cost. This policy takes advantage of the sharing of common components. We use simulation, infinitesimal perturbation analysis and steepest descent algorithm to find the components’ order-up-to levels for the proposed policy and then compare its effectiveness with two policies that do not allow the sharing of common components. For the scenarios that we have run, the numerical results show that the proposed policy gives the lowest total cost. In addition, we have show the benefits of risk pooling from common component sharing and the echelon effect under different range of parameters.
机译:本文考虑了一个由两部分组成的按库存组装的系统,该系统由多个组件和产品组成,并且使用了定期审核策略。有些组件是几种产品共有的。我们提出了一种组件分配策略,该策略试图最小化包括持有成本和短缺成本的总成本。该策略利用了共享公共组件的优势。我们使用仿真,无穷微扰动分析和最速下降算法来查找拟议策略的组件顺序,然后将其有效性与不允许共享公共组件的两个策略进行比较。对于我们已经运行的方案,数值结果表明,所提出的策略提供了最低的总成本。此外,我们已经展示了在不同参数范围内,公共成分共享和梯队效应带来的风险汇总的好处。

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