计算机与现代化 ›› 2023, Vol. 0 ›› Issue (04): 39-46.

• 软件工程 • 上一篇    下一篇

基于ESI合作模式的钢铁企业多目标综合生产计划优化

  

  1. (上海出版印刷高等专科学校,上海 200093)
  • 出版日期:2023-05-09 发布日期:2023-05-09
  • 作者简介:张琦琪(1977—),女,山西太原人,讲师,博士,研究方向:生产计划与调度,智能优化算法,E-mail: 978584773@qq.com; 通信作者:陈群(1983—),女,江西吉安人,副教授,博士,研究方向:供应链管理,供应链金融,E-mail: 41557761@qq.com。
  • 基金资助:
    国家社会科学基金资助项目(18BT058)

Multi-objective Optimization of Aggregate Production Planning in Iron-steel Plant Based on ESI Cooperation Model

  1. (Shanghai Publishing and Printing College, Shanghai 200093, China)
  • Online:2023-05-09 Published:2023-05-09

摘要: 基于供应商早期介入的合作模式,研究供应链环境下多产品、多工序、多下游企业的钢铁企业(核心企业)综合生产计划编制问题。以最大化核心企业产能利用率和下游企业销售利润率为多目标建立优化模型,同时考虑各工序产能对不同产品的生产限制、产销平衡原则和下游企业的需求期望及产品进一步加工售出利润等因素。基于Pareto占优理论,提出一种多目标多种群协同更新的粒子群算法(MMCPSO)求解,利用外部Pareto占优解引导种群内部粒子的更新,并设计非可行解的启发式修复规则,利用产品在下游企业的售出利润排序启发式地修复非可行解,改进算法性能。仿真实验表明该算法具有可行性和有效性。

关键词: 综合生产计划, 供应商早期介入, 产能优化, 下游企业利润率, 多目标优化

Abstract: Based on early supplier involvement cooperation mode, the aggregate production planning problem of iron-steel plant (core enterprises) with multi-products, multi-process, multi-downstream enterprises in the supply chain environment is researched. In order to maximize the capacity utilization rate of core enterprises and the sales profit rate of downstream enterprises conjointly, a multi-objective optimization model is established. At the same time, the process restriction of the production capacity of each process on different products, the balance principle of production and sales, the demand expectation of downstream enterprises and the profit of further processing and sales of products are considered. Based on the Pareto dominant theory, a multi-objective multi-population cooperative updating particle swarm optimization algorithm (MMCPSO) is proposed to solve the problem, the external Pareto dominant solution is used to guide the updating of the particles in the population, and the heuristic repair rules for the infeasible solutions are designed, and the unfeasible solutions are heuristically repaired by using the sales profit ranking of product from the downstream enterprises, so as to improve the algorithm performance. The simulation results show that the algorithm is feasible and effective.

Key words: aggregate production planning (APP), early supplier involvement (ESI), capacity optimization, sales profit rate of downstream enterprises, multi-objective optimization