Multi-Period Production Capacity Planning for Integrated Product and Production System Design

E. Kazancioglu, K. Saitou
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引用次数: 5

Abstract

This paper presents a simulation-based method to aid multi-period production capacity planning by quantifying the trade-off between product quality and production cost. The product quality is estimated as the statistical variation from the target performances obtained from the output tolerances of the production machines that manufacture the components. The production cost is estimated as the total cost of owning and operating a production facility during the planning horizon. Given demand forecasts in future production periods, a multi-objective genetic algorithm searches for the optimal types and quantity of the production machines to be purchased during each period, which simultaneously maximize the product quality and minimize the production cost during the entire planning horizon. Case studies on automotive valvetrain production are presented as a demonstration
集成产品与生产系统设计的多周期产能规划
本文提出了一种基于仿真的方法,通过量化产品质量与生产成本之间的权衡来辅助多周期产能规划。产品质量的估计是由制造部件的生产机器的输出公差得出的与目标性能的统计差异。生产成本估计为在规划期内拥有和运营生产设施的总成本。给定未来生产周期的需求预测,多目标遗传算法搜索各周期内采购生产机器的最优类型和数量,使整个计划周期内产品质量最大化,生产成本最小化。以汽车气门机构的生产为例进行了论证
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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