非活动人群行人流入过程的微观特征及建模

Xinyu Fan, Long Xia, Weiguo Song
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引用次数: 1

摘要

流入和流出过程是日常生活中常见的现象。已经进行了许多类型的研究来研究外流过程的特征,特别是在有单间或直走廊的情况下。少数学者关注行人流入的运动特征。进一步探索的需求仍然很大。在这篇文章中,使用了一组预先进行的实验来分析不活跃人群的行人流入过程的特征。在这些实验中,不活跃的人被要求在房间内随机停车,导致行人的密集绕行行为。使用梯度分析和旋度分析仔细研究了这些特性。为了模拟上述流入过程,构建了静态全局场,以启发式地导航基于社会力量的微观模型。所提出的模型可以再现实验中的自组织现象。我们的工作可以帮助理解不活跃人群的行人流入过程的场特征。可以标出高混乱程度的区域,为管理者提供实用信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microscopic Characteristics and Modelling of Pedestrian Inflow Process with Inactive Persons
Inflow and outflow processes are common phenomena in daily life. Many types of research have been conducted to study the features of the outflow process, especially in scenarios with a single room or a straight corridor. A few scholars have paid attention to the movement characteristics of pedestrian inflow. Further explorations are still under great demand. In this contribution, a set of pre-conducted experiments are used to analyze the characteristics of the pedestrian inflow process with inactive persons. In these experiments, inactive persons were required to randomly cease within the room, leading to intensive detour behavior of pedestrians. The characteristics are carefully investigated using gradient analysis and curl analysis. To mimic the aforementioned inflow process, static global field is constructed to heuristically navigate a social force based microscopic model. The proposed model can reproduce the self-organized phenomena in the experiments. Our work can help understand the field feature of the pedestrian inflow process with inactive persons. High chaos level areas can be marked out providing practical information for managers.
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