Algorithm and Examples of an Agent-Based Evacuation Model

Author:

Cui Xiaoting,Ji Jingwei,Bai Xuehe

Abstract

This research establishes a “detect-decide-action” agent-based evacuation model based on the social force model, introducing an active steering force into the basis of the dynamic equation with the combination of the behavioral decision model and the probability model. In the AEM, the detection algorithm is used to identify pedestrians or obstacles within the detection radius to provide the next walking direction and apply the active steering force. The obstacle avoidance algorithm is the core of the “action” link. This research focuses on the establishment of the following and bypassing algorithm when moving in the same direction, and the algorithm of a detour when moving in the opposite direction, applying C++ programming language to achieve the basic evacuation behavior simulation of avoiding pedestrians and obstacles in the actual scene. The results show that compared with the grid model and the general social force model, the agent model (AEM) solves the problem of the distortion of evacuation behavior to some extent, and the pedestrian is more flexible in the choice of evacuation path.

Publisher

MDPI AG

Subject

Earth and Planetary Sciences (miscellaneous),Safety Research,Environmental Science (miscellaneous),Safety, Risk, Reliability and Quality,Building and Construction,Forestry

Reference32 articles.

1. Simulation of pedestrian evacuation considering emergency spread and pedestrian panic;Zheng;Phys. A Stat. Mech. Appl.,2019

2. Effective leadership for crowd evacuation;Ma;Phys. A Stat. Mech. Appl.,2016

3. Experimental study on the influence of the crowd density on walking speed and stride length;Xie;J. Saf. Environ.,2016

4. Kuligowski, E.D., Peacock, R.D., and Hoskins, B.L. (2005). A Review of Building Evacuation Models, US Department of Commerce, National Institute of Standards and Technology.

5. A fine discrete field cellular automaton for pedestrian dynamics integrating pedestrian heterogeneity, anisotropy, and time-dependent characteristics;Fu;Transp. Res. C,2018

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