布线(电子设计自动化)
整数规划
计算机科学
应急管理
运筹学
过程(计算)
随机规划
车辆路径问题
还原(数学)
数学优化
算法
工程类
数学
计算机网络
操作系统
几何学
政治学
法学
作者
Jaber Qezelbash-Chamak,Saeid Badamchizadeh,Abbas Seifi
标识
DOI:10.1080/19427867.2023.2270238
摘要
This paper tackles a complex logistics challenge of disaster management, encompassing warehouse location, pre-disaster inventory planning, routing, and post-disaster relief supply delivery. We establish an iterative process for optimizing relief distribution to shelters. Adaptable warehouse inventory reallocation responds to fluctuating demands, guided by a two-phase mathematical programming approach. In the first phase, a two-stage stochastic programming (TSSP) model determines optimal warehouse and shelter locations and inventory levels. In the subsequent phase, we introduce a mixed-integer programming (MIP) model to minimize the overall delivery time by making routing decisions. To streamline the process, we introduce a novel enumeration algorithm that trims down route options by considering unavailable links, effectively transforming the MIP model into an assignment-based model. This innovation results in a noticeable 74% reduction in solution time. Further efficiency is achieved by developing a branch-and-cut algorithm for swift MIP resolution. A real-world case study confirms the practicality of our approach.
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