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Resource pooling for optimal evacuation of a large building

机译:资源池可最佳疏散大型建筑物

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This paper is concerned with modeling, analysis and optimization/control of occupancy evolution in a large building. The main concern is efficient evacuation of a building in the event of threat or emergency. Complexity arises from the curse of dimensionality in a large building, as well as the uncertain and nonlinear dynamics of individuals. In this paper we propose relaxation techniques borrowed from queueing theory to address complexity. Then we provide tools to model occupancy evolution during egress, obtain lower bounds on evacuation time, and construct control solutions to instruct occupants in order to efficiently evacuate the building. The control solutions are based on recent generalizations of the MaxWeight policy for decentralized routing. These results are illustrated with the aid of simulations carried out using realistic building models.
机译:本文涉及大型建筑物中占用变化的建模,分析和优化/控制。主要关注的问题是在发生威胁或紧急情况时如何有效疏散建筑物。复杂性源于大型建筑物中维数的诅咒,以及个体的不确定性和非线性动力学。在本文中,我们提出了从排队理论中借以解决复杂性的松弛技术。然后,我们提供了用于建模出口期间占用变化的工具,获得了疏散时间的下限,并构造了控制解决方案来指导占用者,以便有效地疏散建筑物。控制解决方案基于最近针对分散式路由的MaxWeight策略的概括。这些结果借助使用实际建筑模型进行的模拟进行了说明。

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