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Managing Inventory with Cash Register Information: Sales Recorded but Not Demands

机译:使用收银机信息管理库存:已记录销售但未需求

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摘要

Inventory inaccuracy is common in many businesses. While retailers employ cash registers to enter incoming orders and outgoing sales, inaccuracy arises because they do not record invisible demand such as spoilage, damage, pilferage, or returns. This setting results in incomplete inventory and demand information. An important inventory control problem therefore is to maximize the total expected discounted profit under this setting. Allowing for dependence between demand and invisible demand, we obtain the associated dynamic programming equationwith an infinite-dimensional state space, and reduce it to a simpler form by employing the concept of unnormalized probability. We develop an analytical upper bound on the optimal profit as well as an iterative algorithm for an approximate solution of the problem. We compare profits of the iterative solution and the myopic solution, and then to the upper bound. We see that the iterative solution performs better than the myopic solution, and significantly so in many cases. Furthermore, it gives a profit not far from the upper bound, and is therefore close to optimal. Using our results, we also discuss meeting inventory service levels.
机译:库存错误在许多企业中很常见。零售商使用收银机输入收货订单和收货时,由于不记录诸如损坏,损坏,偷窃或退货之类的无形需求,因此会出现不准确的情况。此设置导致不完整的库存和需求信息。因此,一个重要的库存控制问题是在此设置下最大化总的预期折现利润。考虑到需求与无形需求之间的依赖关系,我们获得了具有无穷维状态空间的关联动态规划方程,并通过采用非归一化概率的概念将其简化为简单形式。我们针对最优利润开发了一个解析上限,并为问题的近似解提供了一种迭代算法。我们比较迭代解决方案和近视解决方案的利润,然后比较上限。我们看到,迭代解决方案的性能优于近视解决方案,并且在许多情况下,迭代性能要好得多。此外,它提供的利润离上限不远,因此接近最佳。使用我们的结果,我们还将讨论满足库存服务水平。

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