A bi-level programing for wildfire self-evacuation network design

R. Ramezanian, Maryam Afkham
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引用次数: 1

Abstract

A non-linear bi-level problem is suggested in this paper for wildfire self-evacuation planning, the upper problem of which includes binary variables and the lower problem includes continuous variables. In this model, the upper problem selects a number of links and adds them to the available evacuation network. It, moreover, predicts the traffic balance, and the time window of the links in the lower problem. A part of the objective function in the bi-level problem is non-linear which is linearized with a linear approximation method that does not require binary variables. Then the linear bi-level model is reformulated as a non- linear single level problem. This model is linearized and transferred into Mixed Integer Programing. The model is then used for the real case study of the Beechworth fire in 2009. The resulted outputs of the model are beneficial in planning design schemes for emergency evacuation to use the maximum potential of the available transportation network.
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一种双层编程的野火自疏散网络设计
本文提出了一种野火自疏散规划的非线性双层次问题,其上层次问题包含二元变量,下层次问题包含连续变量。在该模型中,上层问题选择若干链路并将它们添加到可用的疏散网络中。此外,它还预测了流量均衡,以及下一问题中链路的时间窗口。双水平问题中目标函数的一部分是非线性的,用不需要二元变量的线性逼近方法进行线性化。然后将线性双层模型重新表述为非线性单层问题。将该模型线性化,并转化为混合整数规划。该模型随后被用于2009年比奇沃斯火灾的实际案例研究。该模型的结果有利于规划设计应急疏散方案,以最大限度地利用现有交通网络的潜力。
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来源期刊
International Journal of Industrial Engineering and Production Research
International Journal of Industrial Engineering and Production Research Engineering-Industrial and Manufacturing Engineering
CiteScore
1.60
自引率
0.00%
发文量
0
审稿时长
10 weeks
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