Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.

The primary objective of this study is to compare pedestrian evacuation strategies in the large-scale public space (LPS) using microscopic model. Data were collected by video recording from Tian-yi square for 36 hours in city of Ningbo, China. A pedestrian evacuation simulation model was developed b...

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Main Authors: Jibiao Zhou, Yanyong Guo, Sheng Dong, Minjie Zhang, Tianqi Mao
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2019-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0221872
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spelling doaj-462b0f30eebc4a57b4cb7731ff48a1612021-03-03T19:56:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032019-01-01149e022187210.1371/journal.pone.0221872Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.Jibiao ZhouYanyong GuoSheng DongMinjie ZhangTianqi MaoThe primary objective of this study is to compare pedestrian evacuation strategies in the large-scale public space (LPS) using microscopic model. Data were collected by video recording from Tian-yi square for 36 hours in city of Ningbo, China. A pedestrian evacuation simulation model was developed based on the social force model (SFM). The simulation model parameters, such as reaction time, elasticity coefficient, sliding coefficient, et al, were calibrated using the real data extracted from the video. Five evacuation strategies, strategy 1 (S1) to strategy 5 (S5) involving distance, density and capacity factors were simulated and compared by indicators of evacuation time and channel utilization rate, as well as the evacuation efficiency. The simulation model parameters calibration results showed that a) the pedestrians walking speed is 1.0 ~ 1.5m/s; b) the pedestrians walking diameter is 0.3 ~ 0.4m; c) the frequency of pedestrian arrival and departure followed multi-normal distribution. The simulation results showed that, (a) in terms of total evacuation time, the performance of S4 and S5 which considering the capacity and density factors were best in all evacuation scenarios, the performance of S3 which only considering the density factor was the worst, relatively, and S1 and S2 which considering the distance factor were in the middle. (b) the utilization rate of channels under S5 strategy was better than other strategies, which performs best in the balance of evacuation. S3 strategy was the worst, and S1, S2 and S4 were in the middle. (c) in terms of the evacuation efficiency, when the number of evacuees is within 2, 500 peds, the S1 and S2 strategy which considering the distance factor have best evacuation efficiency than other strategies. And when the number of evacuees is above 2, 500 peds, the S4 and S5 strategy which considering the capacity factor are better than others.https://doi.org/10.1371/journal.pone.0221872
collection DOAJ
language English
format Article
sources DOAJ
author Jibiao Zhou
Yanyong Guo
Sheng Dong
Minjie Zhang
Tianqi Mao
spellingShingle Jibiao Zhou
Yanyong Guo
Sheng Dong
Minjie Zhang
Tianqi Mao
Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
PLoS ONE
author_facet Jibiao Zhou
Yanyong Guo
Sheng Dong
Minjie Zhang
Tianqi Mao
author_sort Jibiao Zhou
title Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
title_short Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
title_full Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
title_fullStr Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
title_full_unstemmed Simulation of pedestrian evacuation route choice using social force model in large-scale public space: Comparison of five evacuation strategies.
title_sort simulation of pedestrian evacuation route choice using social force model in large-scale public space: comparison of five evacuation strategies.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2019-01-01
description The primary objective of this study is to compare pedestrian evacuation strategies in the large-scale public space (LPS) using microscopic model. Data were collected by video recording from Tian-yi square for 36 hours in city of Ningbo, China. A pedestrian evacuation simulation model was developed based on the social force model (SFM). The simulation model parameters, such as reaction time, elasticity coefficient, sliding coefficient, et al, were calibrated using the real data extracted from the video. Five evacuation strategies, strategy 1 (S1) to strategy 5 (S5) involving distance, density and capacity factors were simulated and compared by indicators of evacuation time and channel utilization rate, as well as the evacuation efficiency. The simulation model parameters calibration results showed that a) the pedestrians walking speed is 1.0 ~ 1.5m/s; b) the pedestrians walking diameter is 0.3 ~ 0.4m; c) the frequency of pedestrian arrival and departure followed multi-normal distribution. The simulation results showed that, (a) in terms of total evacuation time, the performance of S4 and S5 which considering the capacity and density factors were best in all evacuation scenarios, the performance of S3 which only considering the density factor was the worst, relatively, and S1 and S2 which considering the distance factor were in the middle. (b) the utilization rate of channels under S5 strategy was better than other strategies, which performs best in the balance of evacuation. S3 strategy was the worst, and S1, S2 and S4 were in the middle. (c) in terms of the evacuation efficiency, when the number of evacuees is within 2, 500 peds, the S1 and S2 strategy which considering the distance factor have best evacuation efficiency than other strategies. And when the number of evacuees is above 2, 500 peds, the S4 and S5 strategy which considering the capacity factor are better than others.
url https://doi.org/10.1371/journal.pone.0221872
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