A Scalable Approach for Dynamic Evacuation Routing in Large Smart Buildings

Van-Quyet Nguyen, Huu-Duy Nguyen, H. Thang, N. Venkatasubramanian, Kyungbaek Kim
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引用次数: 3

Abstract

This paper considers the problem of dynamic evacuation routing in large smart buildings. We investigate a scalable routing approach which not only generates effective routes for evacuees but also quickly updates routes as the disaster status and building conditions could change during the evacuation time. We first design a flexible and scalable evacuation system for large smart buildings with multiple levels of computational support. Given such a system, we develop a novel distributed algorithm for finding effective evacuation routes dynamically by using an LCDT (Length-Capacity-Density-Trustiness) weighted graph model, which is built upon the current disaster information and building conditions. Finally, we propose a caching strategy which expedites dynamic route generation with the current effective route part(s) in order to improve the performance of dynamic evacuation in large buildings. To validate our approach, we test the proposed algorithm with our implementation of an evacuation simulator and compare the results with other approaches. Experimental results show that our approach outperforms other ones in the aspect of the evacuation time reduction and the maximum number of people being evacuated in each time span.
大型智能建筑动态疏散路径的可扩展方法
研究了大型智能建筑中的动态疏散路径问题。我们研究了一种可扩展的路径方法,该方法不仅可以为疏散人员生成有效的路径,而且可以在疏散期间根据灾害状况和建筑条件的变化快速更新路径。我们首先为大型智能建筑设计了一个具有多层计算支持的灵活可扩展的疏散系统。在这样一个系统中,我们开发了一种新的分布式算法,通过使用LCDT(长度-容量-密度-可信度)加权图模型来动态地寻找有效的疏散路线,该模型建立在当前的灾害信息和建筑条件之上。最后,提出了一种基于当前有效路径的快速生成动态路径的缓存策略,以提高大型建筑动态疏散的性能。为了验证我们的方法,我们用我们的疏散模拟器实现测试了所提出的算法,并将结果与其他方法进行了比较。实验结果表明,我们的方法在减少疏散时间和每个时间跨度内疏散的最大人数方面都优于其他方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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