分解
数学优化
本德分解
冗余(工程)
整数规划
线性规划
计算机科学
供应链
可靠性(半导体)
分解法(排队论)
供应链网络
供应链管理
可靠性工程
运筹学
工程类
数学
生态学
功率(物理)
物理
离散数学
量子力学
政治学
法学
生物
作者
Nader Azad,Elkafi Hassini
出处
期刊:Transportation Science
[Institute for Operations Research and the Management Sciences]
日期:2019-08-28
卷期号:53 (5): 1287-1312
被引量:39
标识
DOI:10.1287/trsc.2018.0875
摘要
This paper investigates the design of reliable supply networks to make them resilient to unpredictable disruptions. We develop an optimization model that incorporates several features, including (1) partial failure of facilities (instead of complete shutdown) resulting in interrupted supply capacity, (2) the effect of disruption on customer demand, and (3) the possibility to use multistrategies to mitigate disruption. We formulate a mixed-integer linear programming model to determine the optimal location of facilities and assignment of customers to opened facilities. An accelerated Benders decomposition method with valid inequalities is proposed to solve the problem. We discuss the computational efficiency of this decomposition procedure using two case studies as well as randomized data. For medium- and large-sized instances, our approach can decrease computational times by as much as 60% on average. We analyze the effect of multimitigation policies on the optimal solution and the model performance. Compared with the existing single-mitigation strategy models, we find that our model reduces the need for redundancy by as much as 50% and improves the total cost by as much as 8% in our case studies.
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