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Optimal ordering and production policy for a two-stage production delivery system under lumpy demand

机译:需求不佳的两阶段生产交付系统的最优订购和生产策略

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This paper develops an optimal batch size and raw material ordering policy for a two-stage production delivery system that incorporates a fixed quantity supply of finished goods to a buyer at a fixed interval of time. First, a general cost model is formulated considering both supplier (of raw material) and buyer (of finished products) sides. The model is used to determine an optimal ordering policy for procurement of raw materials, and the manufacturing batch size to minimize the total cost. Using the proposed model and its optimal solution, one can determine optimal production lot size for each stage, optimal number of transportation for semi-finished goods, and optimal quantity of semi-finished goods transported each time to meet the lumpy demand of consumers. Finally, we examine the sensitivity of raw materials ordering and production lot size to changes in ordering cost, transportation cost and manufacturing setup cost.
机译:本文为两阶段生产交付系统制定了一个最佳的批次大小和原材料订购策略,该系统将在固定的时间间隔内向买方提供固定数量的成品供应。首先,要制定一个综合成本模型,同时考虑(原材料的)供应商和(成品的)买方。该模型用于确定用于原材料采购的最佳订购策略,并确定制造批次的大小以最大程度地降低总成本。使用所提出的模型及其最佳解决方案,可以确定每个阶段的最佳生产批量大小,半成品的最佳运输次数以及每次运输的半成品的最佳数量,以满足消费者的块状需求。最后,我们研究了原材料订购和生产批量大小对订购成本,运输成本和制造设置成本变化的敏感性。

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