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首页> 外文期刊>Naval Research Logistics >Exact analysis of (R, s, S) inventory control systems with lost sales and zero lead time
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Exact analysis of (R, s, S) inventory control systems with lost sales and zero lead time

机译:对(R,s,S)库存控制系统的精确分析,其销售损失为零且提前期为零

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摘要

We study an (R, s, S) inventory control policy with stochastic demand, lost sales, zero lead-time and a target service level to be satisfied. The system is modeled as a discrete time Markov chain for which we present a novel approach to derive exact closed-form solutions for the limiting distribution of the on-hand inventory level at the end of a review period, given the reorder level (s) and order-up-to level (S). We then establish a relationship between the limiting distributions for adjacent values of the reorder point that is used in an efficient recursive algorithm to determine the optimal parameter values of the (R, s, S) replenishment policy. The algorithm is easy to implement and entails less effort than solving the steady-state equations for the corresponding Markov model. Point-of-use hospital inventory systems share the essential characteristics of the inventory system we model, and a case study using real data from such a system shows that with our approach, optimal policies with significant savings in inventory management effort are easily obtained for a large family of items.
机译:我们研究具有随机需求,销售损失,零提前期和要满足的目标服务水平的(R,s,S)库存控制策略。该系统被建模为离散时间马尔可夫链,为此,我们提出了一种新颖的方法,可以得出精确的封闭式解决方案,以便在给定重新订购水平的情况下,在审核期结束时限制现有库存水平的有限分布。和最高等级(S)。然后,我们在重新排序点的相邻值的限制分布之间建立关系,该关系在有效的递归算法中用于确定(R,s,S)补货策略的最佳参数值。与求解对应的马尔可夫模型的稳态方程相比,该算法易于实现且所需的精力更少。使用点医院库存系统具有我们所建模的库存系统的基本特征,并且使用该系统中的真实数据进行的案例研究表明,采用我们的方法,可以轻松地获得可节省大量库存管理工作量的最优策略。大家族的物品。

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