基于贝叶斯纳什均衡的行人疏散仿真模型

IF 2.2 3区 工程技术 Q1 SOCIAL SCIENCES, INTERDISCIPLINARY Jasss-The Journal of Artificial Societies and Social Simulation Pub Date : 2023-01-01 DOI:10.18564/jasss.5037
Yiyu Wang, Jiaqi Ge, Alexis Comber
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引用次数: 2

摘要

本研究将贝叶斯博弈论应用于基于智能体的行人疏散模型。比较了三种行人行为:随机跟随、最短路径和贝叶斯纳什均衡(BNE),以及它们的组合。结果表明,BNE行人能够预测下一步的拥堵程度并调整方向以避免拥堵,从而能够更快地疏散,与现实中的行人疏散行为非常接近。进行了一系列模拟实验,以评估BNE是否以及如何影响行人疏散程序。结果表明:1)BNE对缩短疏散时间有较大影响;2) BNE行人表现出更智能、更高效的疏散行为;3)随着BNE用户比例的增加,平均疏散时间减少,平均舒适度增加。文中给出了模型的详细描述和相关实验结果。还指出了一些限制以及进一步的工作。
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An Agent-Based Simulation Model of Pedestrian Evacuation Based on Bayesian Nash Equilibrium
This research incorporates Bayesian game theory into pedestrian evacuation in an agent-based model. Three pedestrian behaviours were compared: Random Follow, Shortest Route and Bayesian Nash Equilibrium (BNE), as well as combinations of these. The results showed that BNE pedestrians were able to evacuate more quickly as they predict congestion levels in their next step and adjust their directions to avoid congestion, closely matching the behaviours of evacuating pedestrians in reality. A series of simulation experiments were conducted to evaluate whether and how BNE affects pedestrian evacuation procedures. The results showed that: 1) BNE has a large impact on reducing evacuation time; 2) BNE pedestrians displayed more intelligent and efficient evacuating behaviours; 3) As the proportion of BNE users rises, average evacuation time decreases, and average comfort level increases. A detailed description of the model and relevant experimental results is provided in this paper. Several limitations as well as further works are also identified.
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来源期刊
CiteScore
7.40
自引率
9.50%
发文量
16
审稿时长
21 weeks
期刊介绍: The Journal of Artificial Societies and Social Simulation is an interdisciplinary journal for the exploration and understanding of social processes by means of computer simulation. Since its first issue in 1998, it has been a world-wide leading reference for readers interested in social simulation and the application of computer simulation in the social sciences. Original research papers and critical reviews on all aspects of social simulation and agent societies that fall within the journal"s objective to further the exploration and understanding of social processes by means of computer simulation are welcome.
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