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Optimisation for identifying critical emergency evacuation facilities on stochastic transportation networks

机译:优化识别随机交通网络上的紧急紧急疏散设施

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摘要

Identifying critical facilities is crucial for emergency evacuation. The r interdiction median problem (RIM) was first formulated as a mixed-integer programming model. However, it is observed that the congestion effect of transportation network cannot be just ignored during the emergency evacuation. This paper attempts to present an analytical model for identifying critical evacuation facilities involving stochastic evacuation traffic flow assignment. RIM is extend with traffic assignment techniques under a bilevel programming framework. In this model, the upper level aims at identifying critical shelters, and the lower level conveys stochastic user equilibrium problems. The model simultaneously captures the interaction between the emergency shelter interdictions and transportation network flow assignment. This model is analysed with a classical example to justify how the interdiction and traffic congestion impact the emergency evacuation and the shelter location. For solving this model, a multiagent evolutionary algorithms-based iterative approach and an augmented Lagrangian method are employed. A series of numerical example studies are conducted to test the performance of the proposed model and algorithms.
机译:确定关键设施对于紧急疏散至关重要。 r拦截中位数问题(RIM)首先被公式化为混合整数规划模型。然而,观察到在紧急疏散期间不能仅仅忽略运输网络的拥塞效应。本文试图提出一种分析模型,用于识别涉及随机疏散交通流分配的关键疏散设施。 RIM在双层编程框架下扩展了流量分配技术。在此模型中,上层旨在确定关键的避难所,下层则传达了随机的用户平衡问题。该模型同时捕获了紧急避难所停顿与交通网络流量分配之间的相互作用。通过经典示例分析此模型,以证明拦截和交通拥堵如何影响紧急疏散和避难所的位置。为了解决该模型,采用了基于多主体进化算法的迭代方法和增强拉格朗日方法。进行了一系列数值示例研究,以测试所提出的模型和算法的性能。

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