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首页> 外文期刊>Physica, A. Statistical mechanics and its applications >An extended cost potential field cellular automaton model for pedestrian evacuation considering the restriction of visual field
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An extended cost potential field cellular automaton model for pedestrian evacuation considering the restriction of visual field

机译:考虑视野限制的人行疏散的扩展成本潜在场蜂窝自动化模型

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摘要

Pedestrian dynamics with affected visual field under emergency situation is a difficult point in the simulation of pedestrian flow. In this paper, an extended cost potential field cellular automaton model is proposed to investigate the motion of pedestrians through obscure room lack of visibility (due to smoke, darkness, etc.). A novel visibility function is introduced to describe visual effect caused by poor vision, which will lead to the increasing cost of discomfort. The numerical simulations are performed to explore the effects of factors, such as psychology tension, visual radius and pedestrian density on pedestrian evacuation. It was found that evacuation time relies on visual radius and initial density. The evacuation time under affected visual field increases with the decrease of visual radius. At low density, a moderate tension degree can improve the evacuation efficiency. These findings will be helpful in pedestrian control and management under an emergency. (C) 2018 Elsevier B.V. All rights reserved.
机译:紧急情况下受影响视野的行人动态是行人流动模拟的难点。在本文中,提出了一种扩展的成本潜在场蜂窝自动机模型,以通过模糊的房间缺乏可见性来研究行人的运动(由于烟雾,黑暗等)。引入了一种新的可见性功能,以描述视觉差的视觉效果,这将导致不适的不适成本。执行数值模拟以探讨因素的影响,例如心理张力,视觉半径和行人疏散性的效果。发现疏散时间依赖于视觉半径和初始密度。受影响的视野下的疏散时间随着视觉半径的降低而增加。在低密度下,适度的张紧度可以提高抽空效率。这些调查结果将在紧急情况下有助于行人控制和管理。 (c)2018年elestvier b.v.保留所有权利。

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