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UPGRADE PLANNING OF USED PRODUCTS CONSIDERING UNCERTAINTY IN MARKET DEMAND, QUANTITY AND VARIABILITY IN QUALITY OF RETURNS

机译:考虑在市场需求的不确定性,返回质量的不确定性,升级使用产品的规划

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Remanufacturing is becoming an important business as market demand for remanufactured products increases and environmental legislation puts further enforcement on Original Equipment Manufacturers (OEMs). However, profitability of salvaging operations is still a challenge in remanufacturing industry. Several factors influence the cost effectiveness of remanufacturing operations, including variability in the quality of received used items and uncertainty in the quantity of return flows and the market demand for those products. Remanufacturing companies need to handle these sources of uncertainties in order to improve their profitability. The current paper develops a Stochastic Optimization method to model these sources of uncertainties in take-back and inventory planning systems. The main purpose of the model is to determine the best upgrade level for a received product with certain quality level with the aim of profit maximization. An example of personal computer is provided to show the application of the method.
机译:再制造正成为一个重要的业务,随着市场对再制造产品的需求增加,环境立法在原始设备制造商(OEM)上提出了进一步的执法。然而,救助行动的盈利能力仍然是再制造行业的挑战。有几个因素会影响再制造运营的成本效益,包括所接受的使用物品质量的可变性,以及回报流量的不确定性以及对这些产品的市场需求。再制造公司​​需要处理这些不确定性来源,以提高其盈利能力。目前的论文开发了一种随机优化方法,以模拟回收和库存规划系统中的这些不确定性源。该模型的主要目的是确定所接收产品的最佳升级水平,具有一定质量水平,目的是利润最大化。提供了一个个人计算机的示例以显示该方法的应用。

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