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A GEOMETRIC PROGRAMMING APPROACH FOR A VENDOR MANAGED INVENTORY OF A MULTIRETAILER MULTI-ITEM EPQ MODEL

机译:多税商多项目EPQ模型的供应商管理库存的几何编程方法

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摘要

Due to the uncertain situations of the world, considering inventory management in a stochastic environment gains a lot of interest. In this paper, we propose a multi-item economic production quantity (EPQ) model with a shortage for a single-vendor, multi-retailer supply chain under vendor managed inventory (VMI) policy in a stochastic environment. Three stochastic constraints are developed in the model. Geometric programming (GP) approach is employed to find the optimal solution of the nonlinear stochastic programming problem to minimize the mean-variance of the total inventory cost of the system. Since the problem is in the Signomial form, first, an algorithm is used to convert the model into the standard GP form. The performance of the addressed model and the solving method are evaluated based on computational experiments and sensitivity analysis. A case study in an Iranian furniture supply chain is conducted to show the applicability of the proposed model and 17.78% improvement in terms of total cost is gained.
机译:由于世界的不确定情况,考虑到随机环境中的库存管理获得了很多兴趣。在本文中,我们提出了一个多项目经济生产量(EPQ)模型,为单一供应商,在随机环境中的供应商管理库存(VMI)政策下的单摊多零售商供应链缺乏。在模型中开发了三个随机约束。采用几何编程(GP)方法来查找非线性随机编程问题的最佳解决方案,以最大限度地减少系统总库存成本的平均值。由于问题在于标志形式,首先,使用算法将模型转换为标准GP形式。基于计算实验和敏感性分析,评估所寻址模型和求解方法的性能。进行伊朗家具供应链的案例研究,以表明所提出的模型的适用性,从而获得了总成本的17.78%。

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