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Multi-item integrated supply chain model for deteriorating items with stock dependent demand under fuzzy random and bifuzzy environments

机译:模糊随机和模糊环境下具有变数需求的变质物品的多物品集成供应链模型

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In this paper, we have investigated multi-item integrated production-inventory models of supplier and retailer with a constant rate of deterioration under stock dependent demand. Here we have considered supplier's production cost as nonlinear function depending on production rate, retailers procurement cost exponentially depends on the credit period and suppliers transportation cost as a non-linear function of the amount of quantity purchased by the retailer. The models are optimized to get the value of the credit periods and total time of the supply chain cycle under the space and budget constraints. The models are also formulated under fuzzy random and bifuzzy environments. The ordering cost, procurement cost, selling price of retailer's and holding costs, production cost, transportation cost, setup cost of the supplier's and the total storage area and budget are taken in imprecise environments. To show the validity of the proposed models, few sensitivity analyses are also presented under the different rate of deterioration. The models are also discussed in non deteriorating items as a special case of the deteriorating items. The deterministic optimization models are formulated for minimizing the entire monetary value of the supply chain and solved using genetic algorithm (GA). A case study has been performed to illustrate those models numerically.
机译:在本文中,我们研究了在库存依赖需求下具有恒定恶化率的供应商和零售商的多项目集成生产库存模型。在这里,我们已将供应商的生产成本视为取决于生产率的非线性函数,零售商的采购成本与信贷期成指数关系,而供应商的运输成本则是零售商购买数量的非线性函数。对模型进行了优化,以在空间和预算约束下获得信用期的价值和供应链周期的总时间。这些模型也是在模糊随机和双模糊环境下制定的。采购成本,采购成本,零售商的销售价格和持有成本,生产成本,运输成本,供应商的设置成本以及总存储区域和预算是在不精确的环境中得出的。为了显示所提出模型的有效性,在不同的恶化率下也很少进行敏感性分析。在非恶化项目中还讨论了模型,作为恶化项目的特例。确定性优化模型用于最小化供应链的整个货币价值,并使用遗传算法(GA)进行求解。已经进行了案例研究以数字方式说明这些模型。

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