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首页> 外文期刊>International journal of industrial and systems engineering >Bi-objective reliable multi-product location-inventory problem design with perishable products and freshness-dependent demands
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Bi-objective reliable multi-product location-inventory problem design with perishable products and freshness-dependent demands

机译:双目标可靠的多产品定位 - 库存问题设计与易腐产品和新鲜依赖性需求

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摘要

This paper tackles a bi-objective location-inventory problem (LIP) in a three-echelon multi-product supply chain with perishable products. Demands from customers are stochastic and freshness-dependent. Moreover, reliability issues are considered in terms of three different levels of failures for the distribution centres, namely disastrous, serious and partial. We also assess how well the customers' demands are met with products that are fresh enough and regard this as a reliability indicator from the viewpoint of customers. The problem is formulated as a mixed integer nonlinear programming (MINLP) model and six multi-objective decision-making (MODM) methods namely individual optimisation method, goal programming method, LP metrics/global criteria method, utility function method, goal attainment method, and maxi-min method are applied to solve test problems of different sizes. Finally, to select the best method, we used the filtering/displaced ideal solution (DIS) method where the goal programming method turned out to outperform other methods. Goal programming was then applied for sensitivity analysis of the problem.
机译:本文用易腐烂的产品来解决三梯度多产品供应链中的双目标位置库存问题(唇)。客户的需求是随机和新鲜的依赖性。此外,根据分销中心的三种不同程度的失败,即灾难性,严重和部分地,考虑了可靠性问题。我们还评估了客户需求与新鲜产品的需求有多符合您的新产品,并从客户的角度看这是可靠性指标。该问题被制定为混合整数非线性编程(MINLP)模型和六种多目标决策(MODM)方法即单独的优化方法,目标编程方法,LP指标/全局标准方法,公用事业功能方法,目标达索方法,和Maxi-min方法用于解决不同尺寸的测试问题。最后,要选择最佳方法,我们使用过滤/移位的理想解决方案(DIS)方法,其中目标编程方法始终以外的其他方法。然后应用目标编程以进行问题的敏感性分析。

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