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Two-echelon supply chain inventory model with controllable lead time and service level constraint

机译:具有可控提前期和服务水平约束的两级供应链库存模型

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This paper considers a two-echelon supply chain inventory problem consisting of a single-vendor and a single-buyer. In the system under study, a vendor produces a product in a batch production environment and supplies it to a buyer facing a stochastic demand, which is assumed to be normally distributed. Also, buyer's lead time is controllable which can be shortened at an added cost and all shortages are backor-dered. A model has been formulated for an integrated vendor-buyer problem to jointly determine the optimal order quantity, lead time and the number of shipments from the vendor to the buyer during a production cycle while minimizing the total expected cost of the vendor-buyer integrated system. It is often difficult to estimate the shortage cost in inventory systems. Therefore, instead of having a shortage cost term in the objective function, a service level constraint (SLC) is included in the model that requires a certain proportion of demands to be met in each cycle. An efficient procedure has been suggested to find the bounds on number of shipments and then, an algorithm is developed to obtain the optimal solution of the proposed model. A numerical example is included to illustrate the algorithmic procedure and the effects of key parameters are studied to analyze the behavior of the model. Finally, the savings of buyer and vendor are investigated from implementation of joint optimization model over the model in which they minimize their own cost independently.
机译:本文考虑了由单卖方和单买方组成的两级供应链库存问题。在所研究的系统中,卖方在批生产环境中生产产品,并将其提供给面临随机需求的买方,假定该需求是正态分布的。而且,买方的交货时间是可控的,可以缩短交货时间,但要增加成本,并且可以弥补所有短缺。已针对集成的卖方-买方问题制定了模型,以共同确定最佳订单数量,交货时间和生产周期中从卖方到买方的发货数量,同时将卖方-买方集成系统的总预期成本降至最低。通常很难估计库存系统的短缺成本。因此,不是在目标函数中包含短缺成本项,而是在模型中包括了服务水平约束(SLC),该条件要求在每个周期中满足一定比例的需求。已经提出了一种有效的程序来找到装运数量的界限,然后,开发了一种算法来获得所提出模型的最优解。包括一个数值示例来说明算法过程,并研究了关键参数的影响以分析模型的行为。最后,从联合优化模型的实施(相对于他们各自最小化自身成本的模型)中研究了买方和卖方的节省。

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