Simulation of Allocation Policies for a Serial Inventory System Under Advance Demand Information

Bhoomica M. Nataraja, Z. Atan
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Abstract

In this paper, we simulate allocation policies for a two-stage inventory system that receives perfect advance demand information (ADI) from customers belonging to different demand classes. Demands for each customer class are generated by independent Poisson processes while the processing times are deterministic. All customers in the same class have the same demand lead time (the difference between the due date and the requested date) and back-ordering costs. Each stage in the inventory system follows order-base-stock-policies where the replenishment order is issued upon arrival of a customer order. The problem requires a fast and reliable method that determines the system performance under different policies and ADI. Thus, we employ discrete event simulation to obtain output parameters such as inventory costs, fill rates, waiting time, and order allocation times. A numerical analysis is conducted to identify a reasonable policy to use in this type of system.
预先需求信息下串行库存系统分配策略的仿真
在本文中,我们模拟了一个两阶段库存系统的分配策略,该系统从属于不同需求类别的客户那里接收到完美的预先需求信息。每个客户类别的需求由独立的泊松流程生成,而处理时间是确定的。同一类中的所有客户都具有相同的需求提前期(到期日期和请求日期之间的差值)和延期订购成本。库存系统中的每个阶段都遵循订单基础库存政策,即在客户订单到达时发出补充订单。该问题需要一种快速可靠的方法来确定系统在不同策略和ADI下的性能。因此,我们采用离散事件模拟来获得诸如库存成本、填充率、等待时间和订单分配时间等输出参数。进行了数值分析,以确定在这类系统中使用的合理策略。
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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