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Understanding human queuing behaviour at exits: an empirical study

机译:了解出口处的人排队行为:一项实证研究

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摘要

The choice of the exit to egress from a facility plays a fundamental role in pedestrian modelling and simulation. Yet, empirical evidence for backing up simulation is scarce. In this contribution, we present three new groups of experiments that we conducted in different geometries. We varied parameters such as the width of the doors, the initial location and number of pedestrians which in turn affected their perception of the environment. We extracted and analysed relevant indicators such as distance to the exits and density levels. The results put in evidence the fact that pedestrians use time-dependent information to optimize their exit choice, and that, in congested states, a load balancing over the exits occurs. We propose a minimal modelling approach that covers those situations, especially the cases where the geometry does not show a symmetrical configuration. Most of the models try to achieve the load balancing by simulating the system and solving optimization problems. We show statistically and by simulation that a linear model based on the distance to the exits and the density levels around the exit can be an efficient dynamical alternative.
机译:从设施出口的选择在行人建模和仿真中起着基本作用。但是,缺乏支持模拟的经验证据。在此贡献中,我们介绍了在不同几何形状下进行的三组新的实验。我们改变了门宽,初始位置和行人数量等参数,进而影响了他们对环境的感知。我们提取并分析了相关指标,例如到出口的距离和密度水平。结果证明了以下事实:行人使用时变信息来优化他们的出口选择,并且在拥挤的状态下,会在出口上产生负载平衡。我们提出了一种涵盖这些情况的最小建模方法,尤其是几何图形未显示对称配置的情况。大多数模型都试图通过模拟系统并解决优化问题来实现负载均衡。我们通过统计和仿真显示,基于到出口的距离和出口周围的密度水平的线性模型可以是有效的动力学选择。

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