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Pedestrian choice behavior analysis and simulation of vertical walking facilities in transfer station

Pedestrian choice behavior analysis and simulation of vertical walking facilities in transfer station
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摘要 Considering the interlayer height, luggage, the difference between queuing pedestrians, and walking speed, the pedestrian choice model of vertical walking facilities is established based on a support vector machine. This model is verified with the pedestrian flow data of Changchun light-rail transfer station and Beijing Xizhimen transfer station. Adding the pedestrian choice model of vertical walking facilities into the pedestrian simulation model which is based on cellular automata, the pedestrian choice behavior is simulated. In the simulation, the effects of the dynamic influence factors are analyzed. To reduce the conflicts between pedestrians in opposite directions, the layout of vertical walking facilities is improved. The simulations indicate that the improved layout of vertical walking facilities can improve the efficiency of pedestrians passing. Considering the interlayer height, luggage, the difference between queuing pedestrians, and walking speed, the pedestrian choice model of vertical walking facilities is established based on a support vector machine. This model is verified with the pedestrian flow data of Changchun light-rail transfer station and Beijing Xizhimen transfer station. Adding the pedestrian choice model of vertical walking facilities into the pedestrian simulation model which is based on cellular automata, the pedestrian choice behavior is simulated. In the simulation, the effects of the dynamic influence factors are analyzed. To reduce the conflicts between pedestrians in opposite directions, the layout of vertical walking facilities is improved. The simulations indicate that the improved layout of vertical walking facilities can improve the efficiency of pedestrians passing.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第10期562-570,共9页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.51278221 and 51378076) the Science Technology Development Project of Jilin Province,China(Grant No.20140204027SF)
关键词 vertical walking facilities pedestrian choice behavior support vector machine cellular automata vertical walking facilities pedestrian choice behavior support vector machine cellular automata
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