大订单下服务退化的基本库存策略

Bisheng Du, C. Larsen
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引用次数: 9

摘要

我们研究了一个由基本库存策略控制的库存系统,该系统假设了一个复合更新需求过程。我们通过纳入降低大订单服务的规则来扩展基本库存政策。考虑了两个具体的规则,分别记为delay (q,t)和Split(q)。参数q区分常规订单(大小小于或等于q)和较大订单。我们开发了性能度量的数学表达式:常规订单的订单填充率和平均库存水平。我们进行了数值实验,其中每个规则的延迟参数t和基本库存水平使得所有客户(两种订单类型)在两个规则之间是无关紧要的。当比较平均库存水平的差异时,我们可以在分割(q)规则中对分割订单的成本阈值(否则可能难以量化)进行评估。数值结果表明,该阈值随订单大小的变化而增大。基于数值实验,我们的结论是,当订单大小的方差较低时,则deferred (q,t)似乎是一个很好的选择,而当方差较大时,则Split(q)更具竞争力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Base Stock Policies with Degraded Service to Larger Orders
We study an inventory system controlled by a base stock policy assuming a compound renewal demand process. We extend the base stock policy by incorporating rules for degrading the service of larger orders. Two specific rules are considered, denoted as Postpone(q,t) and Split(q), respectively. The parameter q distinguishes between regular orders (of size less than or equal to q) and larger orders. We develop mathematical expressions for the performance measures: order fill rate of the regular orders and average on-hand inventory level. We make numerical experiments where the postpone parameter t and the base stock levels of each rule are such that all customers (of both order types) are indifferent between the two rules. When comparing the difference in the average on-hand inventory levels, we can then make an assessment of the threshold value of the cost of splitting an order (which may otherwise be hard to quantify) in the rule Split(q). Our numerical results indicate that this threshold value is increasing in the variance of the order sizes. Based on the numerical experiment our conclusion is therefore that when the variance of the order sizes is low, then Postpone(q,t) seems to be a good option, while when the variance is high, then Split(q) is more competitive.
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