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Simultaneous evacuation and entrance planning in complex building based on dynamic network flows

机译:基于动态网络流的复杂建筑同时疏散和入口规划

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This paper presents mathematical models and a heuristic algorithm that address a simultaneous evacuation and entrance planning. For the simultaneous evacuation and entrance planning, four types of mathematical models based on the discrete time dynamic network flow model are developed to provide the optimal routes for evacuees and responders within a critical timeframe. The optimal routes obtained by the mathematical models can minimize the densification of evacuees and responders into specific areas. However, the mathematical model has a weakness in terms of long computation time for the large-size problem. To overcome the limitation, we developed a heuristic algorithm. We also analyzed the characteristics of each model and the heuristic algorithm by conducting case studies. This study pioneers area related to evacuation planning by developing and analyzing four types of mathematical models and a heuristic algorithm which take into account simultaneous evacuation and entrance planning. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文介绍了数学模型和一种解决同时疏散和入口规划的启发式算法。对于同时疏散和入口计划,开发了基于离散时间动态网络流模型的四种类型的数学模型,为在关键时隙内提供撤离者和响应者的最佳路线。由数学模型获得的最佳路线可以最大限度地减少撤离者和响应者进入特定区域的致密化。然而,数学模型在大型问题的长计算时间方面具有弱点。为了克服限制,我们开发了一种启发式算法。我们还通过进行案例研究分析了每个模型和启发式算法的特征。这项研究通过开发和分析四种数学模型和一次性算法来疏散规划的先驱地区,以考虑到同时疏散和入口规划的启发式算法。 (c)2019 Elsevier Inc.保留所有权利。

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