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Simulation of evacuation processes using a bionics-inspired cellular automaton model for pedestrian dynamics

机译:使用仿生学启发的元胞自动机模型模拟人员的疏散过程

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We present simulations of evacuation processes using a recently introduced cellular automaton model for pedestrian dynamics. This model applies a bionics approach to describe the interaction between the pedestrians using ideas from chemotaxis. Here we study a rather simple situation, namely the evacuation from a large room with one or two doors. It is shown that the variation of the model parameters allows to describe different types of behaviour, from regular to panic. We find a non-monotonic dependence of the evacuation times on the coupling constants. These times depend on the strength of the herding behaviour, with minimal evacuation times for some intermediate values of the couplings, i.e., a proper combination of herding and use of knowledge about the shortest way to the exit. (C) 2002 Published by Elsevier Science B.V. [References: 22]
机译:我们使用最近介绍的行人动力学元胞自动机模型对疏散过程进行了仿真。该模型采用仿生学方法,使用趋化性的思想描述行人之间的互动。在这里,我们研究了一种相当简单的情况,即从一扇有两扇门的大房间撤离。结果表明,模型参数的变化可以描述从正常到恐慌的不同类型的行为。我们发现疏散时间对耦合常数的非单调依赖性。这些时间取决于羊群行为的强度,对于联轴器的某些中间值,即最小的疏散时间,即羊群的适当组合和对最短出口方式的了解的使用。 (C)2002由Elsevier Science B.V.出版[参考文献:22]

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