Simulation of Pedestrian Movements on Slope Using Fine Grid Cellular Automata
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Summary
Fine grid cellular automata model is used to model and simulate the movements of pedestrians on a slope and it is shown that the model allows much more possible speed values.
- Type
- preprint
- Published
- 2020-10-07
- Cited by
- 2
- References
- 38
- Access
- Open access
- OpenAlex
- https://openalex.org/W3091867061
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:222177294
Keywords
Cellular automaton, Pedestrian, Grid, Computer science, Grid cell
References
- A study of simulation model for pedestrian movement with evacuation and queuing
- Emergent Fundamental Pedestrian Flows from Cellular Automata Microsimulation
- PEDESTRIAN SPEED-FLOW-DENSITY RELATIONSHIPS
- Transporttechnik der Fussgänger
- Macroscopic pedestrian flow simulation for designing crowd control measures in public transport after special events
- Cellular Automaton Approach to Pedestrian Dynamics - Theory
- ClearPath
- Modeling Slope as a Contributor to Route Selection in Mountainous Areas
- Modeling and Simulation of Pedestrian Traffic Flow
- Self-organization and a dynamical transition in traffic-flow models.
- Motion Planning in Dynamic Environments Using Velocity Obstacles
- Friction effects and clogging in a cellular automaton model for pedestrian dynamics.
- Pedestrian Reactive Navigation for Crowd Simulation: a Predictive Approach
- Self-organization and phase transition in traffic-flow model of a two-lane roadway
- Simulation of pedestrian dynamics using a two dimensional cellular automaton
- A continuum theory for the flow of pedestrians
- Four species CA model for facing pedestrian traffic at rush hour
- Revisiting Hughes’ dynamic continuum model for pedestrian flow and the development of an efficient solution algorithm
- A higher-order macroscopic model for pedestrian flows
- The flow of human crowds
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