供应链网络
网络规划与设计
可靠性(半导体)
计算机科学
供应链
对偶(语法数字)
流量网络
遗传算法
上游(联网)
数学优化
供应链管理
可靠性工程
线性规划
运筹学
工程类
数学
算法
业务
计算机网络
文学类
物理
机器学习
功率(物理)
营销
量子力学
艺术
作者
Hakan Yildiz,Jiho Yoon,Srinivas Talluri,William Ho
摘要
ABSTRACT Risk management in supply chains has been receiving increased attention in the past few years. In this article, we present formulations for the strategic supply chain network design problem with dual objectives, which usually conflict with each other: minimizing cost and maximizing reliability. Quantifying the total reliability of a network design is not as straightforward as total cost calculation. We use reliability indices and develop analytical formulations that model the impact of upstream supply chain on individual entities’ reliability to quantify the total reliability of a network. The resulting multiobjective nonlinear model is solved using a novel hybrid algorithm that utilizes a genetic algorithm for network design and linear programming for network flow optimization. We demonstrate the application of our approach through illustrative examples in establishing tradeoffs between cost and reliability in network design and present managerial implications.
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