Current Urban Studies

Current Urban Studies

ISSN Print: 2328-4900
ISSN Online: 2328-4919
www.scirp.org/journal/cus
E-mail: cus@scirp.org
"Pedestrian Flow Simulation Validation and Verification Techniques"
written by Mohamed H. Dridi,
published by Current Urban Studies, Vol.3 No.2, 2015
has been cited by the following article(s):
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[1] Pedestrian evacuation dynamics considering terrorist attack on-site control action differences between police and security guards
SIMULATION, 2024
[2] SIMCD: SIMulated crowd data for anomaly detection and prediction
Expert Systems with …, 2022
[3] A discrete event simulation for modelling Aljamarat Bridge rituals and evacuation scenarios
… on Modelling and …, 2021
[4] A STUDY ON AGENT-BASED MODELING AND SIMULATION FOR ANALYZING PEDESTRIAN URBAN SPATIAL SAFETY
THESIS, 2021
[5] Modeling pedestrian group behavior in crowd evacuations
2021
[6] A re-examination of the role of friction in the original Social Force Model
2020
[7] Review of modelling and simulating crowds at mass gathering events: Hajj as a case study
2019
[8] Modelling Pedestrian Movement
2019
[9] The model-development process
2019
[10] Mechanical response of dense pedestrian crowds to the crossing of intruders
2018
[11] A cellular automata model for high-density crowd evacuation using triangle grids
Physica A: Statistical Mechanics and its Applications, 2018
[12] Simulating the Movement of Crowds in the Holy City of Karbala
2018
[13] Simulation modeling of pedestrian behavior in the presence of unmanned mobile robots
Simulation Modelling Practice and Theory, 2017
[14] Cellular Automata in Evacuation Modelling
2016
[15] How is an informal transport infrastructure system formed? Towards a spatially explicit conceptual model
2016
[16] ZAHMAH SOCIAL FORCE MODEL FOR PEDESTRIAN MOVEMENT.
2016
[17] Data VV&C of artificial Beijing system
2016
[18] Automaty komórkowe w modelowaniu ewakuacji
Bezpieczeństwo i Technika Po?arnicza, 2016
[19] Zahmah Social Force Model for Pedestrian Movement
2016
[20] Simulation of High Density Pedestrian Flow: Microscopic Model
arXiv preprint arXiv:1501.06496, 2015
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