Yu Y F, Song W G
State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui, People's Republic of China.
Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Apr;75(4 Pt 2):046112. doi: 10.1103/PhysRevE.75.046112. Epub 2007 Apr 20.
This paper presents a cellular automaton model without step back to simulate the pedestrian counter flow in a channel. The consideration of the surrounding environment when people make judgments on moving directions is added to a random walker model also without step back. Two types of walkers: the right walkers going to the right and the left walkers going to the left are taken into account. The characteristics of counterflow are clarified. Influences of the different interaction radius values and system sizes on movement are studied. Phase transition from free moving to jamming is observed with the increase of entrance density. It is found that the critical entrance density pc at the transition point does not depend on the system size when the interaction radius value is large. Simulation results are represented as a comparison with the random walker model.
本文提出了一种无后退的元胞自动机模型来模拟通道中的行人逆流。在同样无后退的随机游走者模型中加入了人们在判断移动方向时对周围环境的考虑。考虑了两种类型的步行者:向右走的右行者和向左走的左行者。阐明了逆流的特征。研究了不同相互作用半径值和系统大小对移动的影响。随着入口密度的增加,观察到从自由移动到拥堵的相变。发现当相互作用半径值较大时,转变点处的临界入口密度(p_c)不依赖于系统大小。模拟结果以与随机游走者模型的比较来呈现。