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首页> 外文期刊>Physics Letters, A >An optimization-based overtaking model for unidirectional pedestrian flow
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An optimization-based overtaking model for unidirectional pedestrian flow

机译:基于优化的单向行人流量的超车模型

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摘要

We propose an optimization-based model for simulating the overtaking behaviour in the unidirectional pedestrian flow. A 'visual area' is introduced so that agents could receive the information regarding their surroundings and react by choosing one of three options: to move straight on, to dodge to the left, or to dodge to the right. And a side preference of each pedestrian for evading and overtaking is implemented based on traffic 'social norms'. The model was validated by reproducing the experimentally obtained pedestrian flow patterns. The effects of the initial pedestrian formation on overtaking behaviour and the evacuation time have been analysed in different geometries. The results show that pedestrian flow patterns after overtaking are obviously influenced by both the initial positions and density of the slow pedestrians in the front. Phase changes of pedestrian formation are observed in both experiment and simulations. On the other hand, for sparse pedestrian crowds, the egress time of the fast individuals is mainly impacted by the horizontal distance between the initial positions of the slow pedestrians in the front, especially in the geometry with a bottleneck. (C) 2018 Elsevier B.V. All rights reserved.
机译:我们提出了一种基于优化的模型,用于模拟单向行人流动中的超前行为。介绍了一个“视觉区域”,以便代理可以通过选择三种选择之一来接收有关周围环境的信息,并通过直接移动,向左躲避,或躲避右侧。基于交通“社会规范”,实施了每个行人逃避和超车的一边偏好。通过再现实验获得的行人流动模式来验证该模型。在不同几何形状中分析了初始行人形成对超车行为的影响和疏散时间。结果表明,超车后的行人流动模式明显受到前方慢行行人的初始位置和密度的影响。在实验和模拟中观察到行人形成的相变。另一方面,对于稀疏的行人人群,快速个体的出口时间主要受到前方慢行行人初始位置之间的水平距离,特别是在具有瓶颈的几何形状中。 (c)2018年elestvier b.v.保留所有权利。

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