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An Integrated Production Inventory Model for Repairable Items with Uncertain Lead Time

机译:交货期不确定的可维修项目的集成生产库存模型

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摘要

Background/Objectives: The objective of this paper is to develop an integrated inventory model of deteriorating items with production and remanufacturing system for a single product under infinite time horizon. Methods/Statistical Analysis: Developed the mathematical equation of the inventory time behavior of the system during the remanufacturing cycle, production cycle and during the collection. After production or remanufacturing the items are supplied to the retailer in small shipments. The used products are collected from the market and a certain ratio of these products which is acceptable for remanufacturing is used for production and rest of all is salvaged. The remanufactured items are assumed to be equivalent to fresh produced items. We obtained an analytical solution which optimizes the total cost of the proposed inventory model. Findings: The model can be applied for optimizing the total inventory cost for the integrated system for such business enterprises where they follow closed loop supply chain. Applications/Improvements: The proposed model is effective as well as efficient for the business organization where they take initiative for remanufacturing/reparability after using the returned and used products from the market. This model further can be extended for inflation and effect of learning.
机译:背景/目的:本文的目的是为无限时间范围内的单个产品开发具有生产和再制造系统的变质物品集成库存模型。方法/统计分析:建立了再制造周期,生产周期和收集期间系统库存时间行为的数学方程式。生产或再制造后,这些物品将以小批量的形式提供给零售商。用过的产品是从市场上收集的,这些产品中一定比例的可以接受再制造的产品可以用于生产,其余的全部可以回收。假定再制造的物品等同于新鲜生产的物品。我们获得了一种分析解决方案,可以优化建议的库存模型的总成本。调查结果:该模型可用于优化遵循闭环供应链的此类企业的集成系统的总库存成本。应用程序/改进:所提出的模型对于业务组织来说是有效的,也是有效的,因为在使用市场上退回的和使用过的产品后,他们主动进行再制造/可修复性。该模型可以进一步扩展以提高通货膨胀和学习效果。

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