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An optimal vendor-buyer cooperative policy under generalized lead-time distribution with penalty cost for delivery lateness

机译:广义提前期分配下具有交货延迟惩罚成本的最优卖方-买方合作策略

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摘要

This paper presents an integrated inventory model for a single-vendor and single-buyer where lead-time is a stochastic variable with general distribution function. The vendor delivers goods at a fixed lot size to the buyer who has a constant demand rate. Storage is permitted on both parties, but a penalty cost is assessed when the vendor delivers the shipment late beyond a threshold time. The problem is formulated as a nonlinear cost model which needs to be minimized to arrive at an optimal policy for reorder point, order quantity, and number of shipments from the vendor to buyer, to cooperatively operate the joint contract. The solution procedure involves both closed form solution and iterative search procedure for this multi-dimensional problem. Numerical examples are presented for uniform, exponential and normally distributed lead-times to demonstrate the solution methodology as well as a precursor test for special cases. The model presented here are applicable for numerous two-stage supply chain systems including retail businesses, assembly and production houses, where two parties of the supply chain are tied to their common goal of achieving minimum total cost of inventory operation.
机译:本文提出了一个针对单个供应商和单个买方的集成库存模型,其中提前期是具有一般分布函数的随机变量。卖方以固定的批量向具有恒定需求率的买方交付货物。双方都可以存储,但是如果卖方延迟交货超过阈值时间,则会评估罚款成本。该问题被表述为一个非线性成本模型,需要将该非线性模型最小化,以针对再订货点,订单数量和从卖方到买方的装运数量达成最优策略,以共同操作联合合同。解决过程涉及此多维问题的封闭式解决方案和迭代搜索过程。给出了数值示例,说明了均匀,指数和正态分布的交货期,以说明解决方法以及特殊情况的先验测试。此处介绍的模型适用于众多两级供应链系统,包括零售企业,装配厂和生产厂,其中供应链的两个方面都与实现最低库存总成本的共同目标联系在一起。

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