供应链
弹性(材料科学)
竞赛(生物学)
计算机科学
随机规划
供应链网络
订单(交换)
产品(数学)
网络规划与设计
风险分析(工程)
运筹学
供应链风险管理
独创性
业务
供应链管理
数学优化
服务管理
营销
工程类
数学
法学
创造力
几何学
物理
财务
热力学
生物
计算机网络
生态学
政治学
作者
Mohammad Mahdi Vali-Siar,Emad Roghanian
出处
期刊:Kybernetes
[Emerald Publishing Limited]
日期:2022-12-08
卷期号:53 (3): 935-959
被引量:7
标识
DOI:10.1108/k-04-2022-0592
摘要
Purpose This study addresses resilient mixed supply chain network design (SCND) and aims to minimize the expected total cost of the supply chain (SC) considering disruptions. The capacity of facilities is considered uncertain. In order to get closer to real-world situations, competition between SCs is considered. Design/methodology/approach A two-stage stochastic programming model is developed for designing the SC network. The location of facilities and selection of suppliers are considered first-stage decisions, and the determination of materials and products flows are second-stage decisions. Some resilience strategies are applied to mitigate the negative impacts of disruptions. Findings The results indicate that considering resilience and applying the related strategies are vitally important, and resilience strategies can significantly improve the SC objective and maintain market share. Also, it is confirmed that unrealistic decisions will be made without considering the competition. Originality/value This study contributes to the literature by proposing a novel mathematical model for the resilient mixed SCND problem. The other contribution is considering the chain-to-chain competition in collecting returned products and selling recycled products to other SCs in a mixed SC under disruptions. Also, a novel hybrid metaheuristic is developed to cope with the complexity of the model.
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