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A chance constrained programming approach for multi-product multi-stage integrated production planning under internal and external uncertainties

机译:内部和外部不确定性下的多产品多阶段集成生产计划的机会约束编程方法

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In industrial practice, making an efficient production planning for a multi-product multi-stage manufacturing network implies that various aspects of the uncertain environment have to be taken into account. In this paper, we address the uncertain conditions originating from internal and external factors including production efficiency, penalty cost of backorders and safety stock deviations, raw material supply and market demand. A novel chance constrained programming model with stochastic objectives and constraints is developed for the multi-product multi-stage integrated production planning problem incorporating the uncertainties. Then the proposed stochastic model is converted into an equivalent crisp mixed integer linear programming (MILP) problem by treating the stochastic objectives and constraints using a direct and an indirect approach. An industrial case is used for implementing and validating the proposed approach. The result indicates that the approach is flexible and that the trade-off between minimizing the cost and controlling the risk is efficient.
机译:在工业实践中,为多产品多阶段制造网络制定有效的生产计划意味着必须考虑不确定环境的各个方面。在本文中,我们解决了来自内部和外部因素的不确定条件,这些因素包括生产效率,延期交货的罚款成本和安全库存偏差,原材料供应和市场需求。针对具有不确定性的多产品多阶段集成生产计划问题,开发了一种具有随机目标和约束的机会约束规划模型。然后,通过使用直接和间接方法处理随机目标和约束,将拟议的随机模型转换为等效的脆混合整数线性规划(MILP)问题。一个工业案例用于实现和验证所提出的方法。结果表明该方法是灵活的,并且在最小化成本和控制风险之间的权衡是有效的。

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