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Vulnerability analysis of evacuation transportation networks

Authors
Kim, J.Lee, J.-H.Kim, H.-J.Do Chung, B.
Issue Date
Dec-2017
Publisher
University of Cincinnati
Keywords
Bi-level optimization; Cell transmission model; Evacuation; Genetic algorithm; Vulnerability analysis
Citation
International Journal of Industrial Engineering : Theory Applications and Practice, v.25, no.5, pp 663 - 673
Pages
11
Indexed
SCIE
SCOPUS
Journal Title
International Journal of Industrial Engineering : Theory Applications and Practice
Volume
25
Number
5
Start Page
663
End Page
673
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/23587
ISSN
1072-4761
1943-670X
Abstract
As natural disasters are increasing in frequency and scale, there is increasing interest in determining appropriate reactions to the disasters, such as evacuation planning and disaster relief distribution. When an evacuation network is built, strategic analyses are needed to support its operations. One of these is a vulnerability analysis to determine the weak points of an evacuation transportation network is one of those. This study aims to analyze the vulnerability of evacuation transportation networks constructed using the cell transmission model. Previous studies have considered all the possible scenarios to investigate weak points without using mathematical approaches. In this paper, we propose a bi-level optimization model to identify the fragile spots in a network. Due to the complexity of the problem, a genetic algorithm combined with linear programming is developed to find good solutions in a reasonable computational time. Solutions from the proposed algorithm are compared with optimal solutions. © 2018 International Journal of Industrial Engineering.
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