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Production planning with a two-stage stochastic programming model in a kitting facility under demand and yield uncertainties

机译:在需求下,在需求和产量不确定性下的试剂设施中具有两阶段随机编程模型的生产规划

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摘要

The main objective of this study is to develop a two-stage stochastic programming framework for lot-sizing and scheduling the production activities at a kitting facility to support a manufacturing plant. The novelty of the study lies in modeling multiple uncertainties using two-stage stochastic programming to solve a kitting specific production planning problem in a manufacturing setting. The demand for the kits and the yield of the kitting workers are the two sources of uncertainties considered in this study. The first-stage decisions include the baseline production schedule and the workforce requirement, while the second stage makes recourse decisions on overtime production. The proposed decision-making framework is validated on a multi-period, multi-product case study involving a kitting facility supporting a manufacturing plant producing braking equipment. The main conclusion of the study is that uncertainties have significant impacts on kitting planning decisions and that the proposed two-stage stochastic programming model was robust in determining optimal production plans under uncertainty.
机译:本研究的主要目标是开发一个两阶段随机编程框架,用于批量尺寸和安排在盒具设施的生产活动,以支持制造工厂。该研究的新颖性在于使用两级随机编程建模多种不确定性,以解决制造环境中的特定生产计划问题。套件的需求和特征工作者的产量是本研究中考虑的两个不确定性的来源。第一阶段决定包括基线生产计划和劳动力要求,而第二阶段则对加班费进行追索决定。拟议的决策框架是在多个时期,多产品案例研究中验证,涉及支持生产制动设备的制造工厂的木质套件设施。该研究的主要结论是,不确定因素对试剂规划决策产生重大影响,并且提出的两阶段随机规划模型在确定不确定性下确定最佳生产计划方面是强劲的。

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