CellEVAC: An adaptive guidance system for crowd evacuation through behavioral optimization
Miguel A. Lopez-Carmona, Alvaro Paricio Garcia

TL;DR
CellEVAC is an adaptive guidance system that dynamically allocates exit-choice instructions in crowd evacuations, improving safety and efficiency by optimizing pedestrian decision-making through behavioral modeling and simulation.
Contribution
We introduce CellEVAC, a novel adaptive guidance system that uses behavioral optimization and simulation to enhance crowd evacuation efficiency and safety.
Findings
CellEVAC outperforms non-guidance evacuations with exponential improvements in complex scenarios.
Our system surpasses Cartesian Genetic Programming in safety, evacuation time, and decision stability.
Behavioral modeling in CellEVAC leads to more natural pedestrian reactions and movements.
Abstract
A critical aspect of crowds' evacuation processes is the dynamism of individual decision making. Here, we investigate how to favor a coordinated group dynamic through optimal exit-choice instructions using behavioral strategy optimization. We propose and evaluate an adaptive guidance system (Cell-based Crowd Evacuation, CellEVAC) that dynamically allocates colors to cells in a cell-based pedestrian positioning infrastructure, to provide efficient exit-choice indications. The operational module of CellEVAC implements an optimized discrete-choice model that integrates the influential factors that would make evacuees adapt their exit choice. To optimize the model, we used a simulation-optimization modeling framework that integrates microscopic pedestrian simulation based on the classical Social Force Model. We paid particular attention to safety by using Pedestrian Fundamental Diagrams…
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