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Multi-objective mathematic programming model and algorithm for production planning in steel and iron enterprise

机译:钢铁企业生产计划的多目标数学规划模型和算法

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As iron and steel products demand becomes increasingly diversified and batch reduced, make-to-order production has gradually satisfied the demand of modern iron and steel enterprises. It is significant for optimization of the make-to-order production planning to guarantee punctual delivery considering inventory, production capacity, processes and product specification. A multi-objective mixed integer nonlinear programming (MINLP) model is formulated to optimize the production, and a hybrid particle swarm optimization algorithm is developed to solve the model. A case study based on the order data of a steel and iron enterprise is presented. Compared with the optimization strategy upon particle swarm optimization and manual scheduling, the proposed optimization model and strategy effectively reduce losses caused by back order, inventory storage and unbalanced production capacity, and provide a reference and guidance for the operation.
机译:随着钢铁产品需求的日益多样化和批量的减少,按订单生产已逐渐满足了现代钢铁企业的需求。对于按订单生产计划的优化以确保准时交货,考虑库存,生产能力,过程和产品规格,这是非常重要的。建立了多目标混合整数非线性规划(MINLP)模型来优化生产,并开发了一种混合粒子群优化算法来求解该模型。基于钢铁企业的订单数据进行了案例研究。与基于粒子群优化和人工调度的优化策略相比,所提出的优化模型和策略有效地减少了延期交货,库存存储和产能不平衡所造成的损失,为运营提供了参考和指导。

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