Perishable inventory model with Markovian arrival process, retrial demands and multiple working vacations

P. V. Laxmi, M. Soujanya
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引用次数: 6

Abstract

In this paper, we consider a continuous review perishable inventory system in which two types of customers, positive and negative, arrive according to a Markovian arrival process. The life time of an item and the lead time of reorder are exponentially distributed. Demands that occur during stock out period or busy period either enter an orbit of size N or are lost. The orbital demands compete their service with an exponential rate depending on the number of demands in the orbit. The waiting demands in the orbit may renege the system after an exponentially distributed amount of time. The server takes multiple working vacations at zero inventory. The steady state joint probability distribution of the number of customers in the orbit and the inventory level is obtained. Various performance measures and cost analysis are shown with numerical results.
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具有马尔可夫到货过程、重审需求和多重工作假期的易腐库存模型
在本文中,我们考虑了一个连续评审易腐库存系统,其中两种类型的客户,积极和消极,根据马尔可夫到达过程到达。产品的寿命和再订货的提前期呈指数分布。在缺货期或繁忙期发生的需求要么进入大小为N的轨道,要么丢失。轨道需求以指数速率竞争其服务,这取决于轨道上的需求数量。轨道上的等待需求可能会在指数分布的时间量之后违背系统。服务器在零库存的情况下进行多次工作休假。得到了轨道上顾客数量与库存水平的稳态联合概率分布。数值结果显示了各种性能度量和成本分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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