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Simulation of bi-directional pedestrian flow through a bottleneck: Cell transmission model

机译:通过瓶颈模拟双向行人流量:细胞传输模型

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We propose an extended cell transmission model with regular hexagonal cell representation to simulate the bi-directional pedestrian flow through a bottleneck. We take humility behavior among pedestrians into the model as a set of parameters. Without loss of generality, this model simulates the boarding and alighting process of passengers for a specific scenario, i.e., the platform area of train or subway. By numerical simulations, we find that the parameters representing humility behavior have significant influence on the fundamental diagrams and the density distribution of pedestrians. By setting the humility parameters reasonably, the congestion can be alleviated and the total boarding and alighting time can be reduced. Moreover, by analyzing the effects of different widths of bottleneck, the conclusion that the pedestrian flow increases linearly as the bottleneck width increases can be obtained. By comparing two different boarding and alighting rules, it can be suggested that the general rule "alighting first and boarding second'' may not always be the most effective one. Some self-organization phenomena, including following and avoidance behavior, spillback, dissipation, and lane formation are also shown in this paper. (C) 2020 Elsevier B.V. All rights reserved.
机译:我们提出了一种具有常规六边形电池表示的扩展细胞传输模型,以模拟通过瓶颈的双向行人流动。我们作为一组参数将行人的谦卑行为占据了模型。如果没有一般性,这种模型模拟了乘客的乘客,即特定场景,即火车或地铁的平台面积。通过数值模拟,我们发现代表谦卑行为的参数对行人的基本图和密度分布产生了重大影响。通过合理地设置谦卑参数,可以减轻拥塞,可以减少总登机和上升时间。此外,通过分析不同宽度的瓶颈宽度的效果,可以获得当瓶颈宽度增加时行人流量随着瓶颈宽度增加而增加的结论。通过比较两种不同的登机和上升规则,可以提出一般规则“升起第一和登机第二”可能并不总是最有效的。一些自组织现象,包括跟随和避免行为,溢出,耗散,本文还显示了车道形成。(c)2020 Elsevier BV保留所有权利。

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