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Analysis of a Decentralized Supply Chain Under Partial Cooperation

机译:部分合作下的去中心化供应链分析

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In this article, we analyze a decentralized supply chain consisting of a supplier and two independent retailers. In each order cycle, retailers place their orders at the supplier to minimize inventory-related expected costs at the end of their respective response times. There are two types of lead times involved. At the end of the supplier lead time, retailers are given an opportunity to readjust their initial orders (without changing the total order size), so that both retailers can improve their expected costs at the end of respective retailer lead times (the time it takes for items to be shipped from the supplier to the retailers). Because of the possibility of cooperation at the end of supplier lead time, each retailer will consider the other's order-up-to level in making the ordering decision. Under mild conditions, we prove the existence of a unique Nash equilibrium for the retailer order-up-to levels, and show that they can be obtained by solving a set of newsboy-like equations. We also present computational analysis that provides valuable managerial insight for design and operation of decentralized systems under the possibility of partial cooperation.
机译:在本文中,我们分析了由供应商和两个独立零售商组成的分散式供应链。在每个订单周期中,零售商都会在供应商处下订单,以在各自的响应时间结束时将与库存相关的预期成本降至最低。涉及两种提前期。在供应商提前期结束时,零售商有机会重新调整其初始订单(不更改总订单量),以便两家零售商都可以在各自的零售商提前期结束时(花费时间)提高预期成本。从供应商运送到零售商的物品)。由于在供应商提前期结束时有可能进行合作,因此每个零售商在制定订购决策时都会考虑到对方的订购量。在温和的条件下,我们证明了零售商的订单最高水平存在唯一的纳什均衡,并表明可以通过求解一组类似报童的方程式来获得它们。我们还提出了计算分析,该分析可以在部分合作的可能性下为分散系统的设计和运行提供有价值的管理见解。

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