计算机集成制造系统 ›› 2021, Vol. 27 ›› Issue (1): 269-282.DOI: 10.13196/j.cims.2021.01.025

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考虑多级设施中断的供应链选址—库存决策模型及优化算法

狄卫民,王然   

  1. 郑州大学管理工程学院
  • 出版日期:2021-01-31 发布日期:2021-01-31
  • 基金资助:
    国家自然科学基金资助项目(U1604123);河南省高等学校重点科研项目计划资助项目(20A630034)。

Supply chain location-inventory decision model and its optimization algorithm with multi-echelon facility disruptions

  • Online:2021-01-31 Published:2021-01-31
  • Supported by:
    Project supported by the National Natural Science Foundation,China(No.U1604123),and the Key Research Project Plan of Henan Provincial Universities,China(No.20A630034).

摘要: 针对由工厂、配送中心和零售商组成的树状供应链系统,提出了合理设计其网络结构的方法。考虑零售商的需求不确定性和工厂与配送中心的中断风险,建立了以系统期望总成本最小化为目标的供应链选址—库存决策模型。利用该模型可以确定配送中心的建设位置、数量和仓储容量,以及各工厂/配送中心对于各配送中心/零售商的补货/送货指派等级。为快速得到模型结果,设计了在遗传算法框架下嵌入特定成本分析法的混合遗传算法,给出了该算法的运算思想和实现步骤。通过算例验证了模型和算法的有效性,算例同时表明,在需求不确定环境下,考虑多级设施中断的决策结果优于不考虑设施中断或者仅考虑单级设施中断时的决策结果。

关键词: 多级设施中断, 需求不确定, 选址—库存模型, 供应链网络优化, 混合遗传算法

Abstract: Focusing on tree-shaped supply chain system consisting of plants,distribution centers and retailers,an appropriate network structrue design approach was developed.By considering demand uncertainty of the retailers and interruption risks of the plants and distribution centers,a supply chain location-inventory decision model with the goal of minimizing expected total cost of the system was established.The model could be used to determine the locations,number and storage capacities of the distribution centers,as well as the replenishment/delivery assignment level of each plant/distribution center to each distribution center/retailer.To rapidly solve the proposed model,a hybrid genetic algorithm with a specific cost analysis method embedded in the genetic algorithm framework was designed,and the operation ideas and implementation steps of the algorithm were given.In addition,the experiments were constructed to verify the effectiveness of the model and its algorithm,and the deduction was obtained simultaneously that under uncertain demand environment,the decision result by considering multi-echelon facility interruptions was better than those without considering facility interruptions or considering only single-echelon facility interruptions.

Key words: multi-echelon facility disruption, uncertain demand, location-inventory model, supply chain network optimization, hybrid genetic algorithm

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