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Optimizing inventory decisions in a two-level supply chain with order quantity constraints

机译:在有订单数量限制的两级供应链中优化库存决策

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A fundamental assumption in traditional inventory models is that all of the ordered items are of perfect quality. A two-level supply chain is considered consists of one retailer and a collection of suppliers that operate within a finite planning horizon, including multiple periods, and a model is formulated that simultaneously determines both supplier selection and inventory allocation problems in the supply chain. It is supposed that the ordered products dependent on the suppliers include a certain percentage of imperfect quality products and have different prices. In this paper, we study the impact of the retailer's financial constraint. On the other hand, suppliers have restricted capacities and set minimum order quantity (MOQ) policy for the retailer's order amount happened in each period. So, the problem is modeled as a mixed integer nonlinear programming. The purpose of this model is to maximize the total profit. The nutrients, fishery and fruitage industries give good examples for the proposed model. A numerical example is presented to indicate the efficiency of the proposed model. Considering the complexity of the model, a genetic algorithm (GA) is presented to solve the model. We demonstrate analytically that the proposed genetic algorithm is suitable in the feasible situations.
机译:传统库存模型中的一个基本假设是,所有订购商品均具有完美的质量。考虑到两级供应链,它由一个零售商和一组供应商组成,这些供应商在有限的计划范围(包括多个期间)内运作,并制定了一个模型,该模型同时确定供应链中的供应商选择和库存分配问题。假定依赖于供应商的订购产品包括一定百分比的不完全优质产品并具有不同的价格。在本文中,我们研究了零售商财务约束的影响。另一方面,供应商的能力受到限制,并且针对每个时期发生的零售商的订购量设置了最小订购量(MOQ)策略。因此,该问题被建模为混合整数非线性规划。该模型的目的是使总利润最大化。营养,渔业和水果业为该模型提供了很好的例子。数值例子表明了所提出模型的有效性。考虑到模型的复杂性,提出了一种遗传算法(GA)来求解模型。我们通过分析证明,提出的遗传算法适用于可行情况。

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