An integration of enhanced social force and crowd control models for high-density crowd simulation

被引:0
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作者
Hoshang Kolivand
Mohd Shafry Rahim
Mohd Shahrizal Sunar
Ahmad Zakwan Azizul Fata
Chris Wren
机构
[1] MaGIC-X (Media and Games Innovation Centre of Excellence),Department of Computer Science
[2] UTM-IRDA Digital Media Centre Universiti Teknologi Malaysia,undefined
[3] Liverpool John Moores University,undefined
来源
关键词
High-density crowd simulation; Crowd simulation; Crowd control models; Social force model;
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学科分类号
摘要
Social force model is one of the well-known approaches that can successfully simulate pedestrians’ movements realistically. However, it is not suitable to simulate high-density crowd movement realistically due to the model having only three basic crowd characteristics which are goal, attraction, and repulsion. Therefore, it does not satisfy the high-density crowd condition which is complex yet unique, due to its capacity, density, and various demographic backgrounds of the agents. Thus, this research proposes a model that improves the social force model by introducing four new characteristics which are gender, walking speed, intention outlook, and grouping to make simulations more realistic. Besides, the high-density crowd introduces irregular behaviours in the crowd flow, which is stopping motion within the crowd. To handle these scenarios, another model has been proposed that controls each agent with two different states: walking and stopping. Furthermore, the stopping behaviour was categorized into a slow stop and sudden stop. Both of these proposed models were integrated to form a high-density crowd simulation framework. The framework has been validated by using the comparison method and fundamental diagram method. Based on the simulation of 45,000 agents, it shows that the proposed framework has a more accurate average walking speed (0.36 m/s) compared to the conventional social force model (0.61 m/s). Both of these results are compared to the real-world data which is 0.3267 m/s. The findings of this research will contribute to the simulation activities of pedestrians in a highly dense population.
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页码:6095 / 6117
页数:22
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