How simple rules determine pedestrian behavior and crowd disasters
arXiv:1105.2152 · doi:10.1073/pnas.1016507108
Abstract
With the increasing size and frequency of mass events, the study of crowd disasters and the simulation of pedestrian flows have become important research areas. Yet, even successful modeling approaches such as those inspired by Newtonian force models are still not fully consistent with empirical observations and are sometimes hard to calibrate. Here, a novel cognitive science approach is proposed, which is based on behavioral heuristics. We suggest that, guided by visual information, namely the distance of obstructions in candidate lines of sight, pedestrians apply two simple cognitive procedures to adapt their walking speeds and directions. While simpler than previous approaches, this model predicts individual trajectories and collective patterns of motion in good quantitative agreement with a large variety of empirical and experimental data. This includes the emergence of self-organization phenomena, such as the spontaneous formation of unidirectional lanes or stop-and-go waves. Moreover, the combination of pedestrian heuristics with body collisions generates crowd turbulence at extreme densities-a phenomenon that has been observed during recent crowd disasters. By proposing an integrated treatment of simultaneous interactions between multiple individuals, our approach overcomes limitations of current physics-inspired pair interaction models. Understanding crowd dynamics through cognitive heuristics is therefore not only crucial for a better preparation of safe mass events. It also clears the way for a more realistic modeling of collective social behaviors, in particular of human crowds and biological swarms. Furthermore, our behavioral heuristics may serve to improve the navigation of autonomous robots.
Article accepted for publication in PNAS
References in corpus (6)
- Interaction Ruling Animal Collective Behaviour Depends on Topological rather than Metric Distance: Evidence from a Field Study
- The Dynamics of Crowd Disasters: An Empirical Study
- Novelty and Collective Attention
- Experimental study of the behavioural mechanisms underlying self-organization in human crowds
- Modeling Crowd Turbulence by Many-Particle Simulations
- Analytical Approach to Continuous and Intermittent Bottleneck Flows
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- Crowd Behaviour during High-Stress Evacuations in an Immersive Virtual Environment
- Collective Motion of Moshers at Heavy Metal Concerts
- Traffic Instabilities in Self-Organized Pedestrian Crowds
- Properties of pedestrians walking in line - Fundamental diagrams
- Large-scales patterns in a minimal cognitive flocking model: incidental leaders, nematic patterns, and aggregates
- Disentangling and modeling interactions in fish with burst-and-coast swimming
- Model of collective fish behavior with hydrodynamic interactions
- Crowd Behavior Analysis: A Review where Physics meets Biology
- The amplification of risk in experimental diffusion chains
- Collective phenomena in crowds - where pedestrian dynamics need social psychology
- Pedestrian Models for Autonomous Driving Part II: High-Level Models of Human Behavior
- Irreversibility, heat and information flows induced by non-reciprocal interactions
- Examining effect of architectural adjustment on pedestrian crowd flow at bottleneck
- Mesoscopic theory for fluctuating active nematics
- Nonparametric inference of interaction laws in systems of agents from trajectory data
- A hierarchy of heuristic-based models of crowd dynamics
- Properties of pedestrians walking in line: Stepping behavior
- Dynamic Stride Length Adaptation According to Utility And Personal Space
- Continuous theory of active matter systems with metric-free interactions
- Gradient Navigation Model for Pedestrian Dynamics
- Modeling indoor-level non-pharmaceutical interventions during the COVID-19 pandemic: a pedestrian dynamics-based microscopic simulation approach
- Invited review: Clogging of granular materials in bottlenecks
- Zebrafish collective behaviour in heterogeneous environment modeled by a stochastic model based on visual perception
- A planetary nervous system for social mining and collective awareness
- Morphological computation and decentralized learning in a swarm of sterically interacting robots
- Vision-based macroscopic pedestrian models
- Physics-based modeling and data representation of pedestrian pairwise interactions
- Flocking in complex environments -- attention trade-offs in collective information processing
- Discrete modes of social information processing predict individual behavior of fish in a group
- Deep reinforcement learning with a particle dynamics environment applied to emergency evacuation of a room with obstacles
- Parameter Estimation of Social Forces in Crowd Dynamics Models via a Probabilistic Method
- Emergent Structural Mechanisms for High-Density Collective Motion Inspired by Human Crowds
- Inference of Causal Information Flow in Collective Animal Behavior
- Intrinsically motivated collective motion
- Fluctuation-induced phase separation in metric and topological models of collective motion
- Self-Organized Hydrodynamics with congestion and path formation in crowds
- Quickest Paths in Simulations of Pedestrians
- Fluctuations around mean walking behaviours in diluted pedestrian flows
- Experimental study on the evading behavior of individual pedestrians when confronting with an obstacle in a corridor
- Beyond the "faster is slower" effect
- The Cry Wolf Effect in Evacuation: a Game-Theoretic Approach
- Consensus reaching in swarms ruled by a hybrid metric-topological distance
- Collective dynamics of pedestrians interacting with attractions
- The effect of environment knowledge in evacuation scenarios involving fire and smoke - a multiscale modelling and simulation approach
- Pedestrian Models based on Rational Behaviour
- Statistical fluctuations in pedestrian evacuation times and the effect of social contagion
- Jamming transitions in force-based models for pedestrian dynamics
- Self-Organized Vortices of Circling Self-Propelled Particles and Curved Active Flagella
- Depletion forces on circular and elliptical obstacles induced by active matter
- Prediction-for-CompAction: navigation in social environments using generalized cognitive maps
- Competing ferromagnetic and nematic alignment in self-propelled polar particles
- Agent-Based Simulation of Collective Cooperation: From Experiment to Model
- Sparse game changers restore collective motion in panicked human crowds
- Noisy Pursuit and Pattern Formation of Self-Steering Active Particles
- Predator-prey survival pressure is sufficient to evolve swarming behaviors
- Exemplar-AMMs: Recognizing Crowd Movements from Pedestrian Trajectories
- Emotion-Based Crowd Representation for Abnormality Detection
- Density regulation in strictly metric-free swarms
- Investigation of Voronoi diagram based Direction Choices Using Uni- and Bi-directional Trajectory Data
- Promoting collective motion of self-propelled agents by distance-based influence
- Pedestrians in static crowds are not grains, but game players
- Escape dynamics based on bounded rationality
- Body and mind: Decoding the dynamics of pedestrians and the effect of smartphone distraction by coupling mechanical and decisional processes
- Fluctuations in pedestrian dynamics routing choices
- Effects of switching behavior for the attraction on pedestrian dynamics
- Optimal strategies for driving a mobile agent in a guidance by repulsion model
- An all-densities pedestrian simulator based on a dynamic evaluation of the interpersonal distances
- A hybrid mathematical model of collective motion under alignment and chemotaxis
- Jamming transitions induced by an attraction in pedestrian flow
- A greedy-navigator approach to navigable city plans
- Development of collective behavior in newborn artificial agents
- Human-Inspired Multi-Agent Navigation using Knowledge Distillation
- Time-delayed Follow-the-Leader model for pedestrians walking in line
- Swirling due to misaligned perception-dependent motility
- The effect of perception anisotropy on particle systems describing pedestrian flows in corridors
- Hydrodynamic Equations for Flocking Models without Velocity Alignment
- Fluctuation-Induced First Order Transition to Collective Motion
- Measuring the rationality in evacuation behavior with deep learning
- Emotion-Based Crowd Simulation Model Based on Physical Strength Consumption for Emergency Scenarios
- Universal scaling in bidirectional flows of self-avoiding agents
- Pedestrian models with congestion effects
- Using Raspberry Pi for scientific video observation of pedestrians during a music festival
- Environmental path-entropy and collective motion
- Corrected pair correlation functions for environments with obstacles
- Thermodynamics-inspired Macroscopic States of Bounded Swarms
- High-statistics modeling of complex pedestrian avoidance scenarios
- Can high-density human collective motion be forecasted by spatiotemporal fluctuations?
- Flocking at the edge of chaos
- Influence of the number of predecessors in interaction within acceleration-based flow models
- Vectorial active matter on the lattice: polar condensates and nematic filaments
- Symmetry restoration by pricing in a duopoly of perishable goods
- Escaping in couples facilitates evacuation: Experimental study and modeling
- Dynamic path dependence of phase behaviors in dense active system
- Counterflow in Evacuations
- On a three dimensional vision based collision avoidance model
- Large-scale pedestrian flow experiments under high-density conditions
- Reentrant phase behavior in binary topological flocks with nonreciprocal alignment
- Market fragmentation and market consolidation: Multiple steady states in systems of adaptive traders choosing where to trade
- Active Matter Flocking via Predictive Alignment
- Bicycle flow dynamics on wide roads: Experiment and modeling
- Strain rate controls alignment in growing bacterial monolayers
- Impact of Impulse Stops on Pedestrian Flow
- Can simple transmission chains foster collective intelligence in binary-choice tasks?
- Dynamics of Panic Pedestrians in Evacuation
- Boltzmann approach to collective motion via nonlocal visual interaction
- Effects of Crowding Perception on Self-organized Pedestrian Flows Using Adaptive Agent-based Model
- Zoology of collective patterns modulated by non-reciprocal, long-range interactions
- Flow on sweeping networks
- Impact of holding umbrella on uni- and bi-directional pedestrian flow: Experiments and modeling
- The Medial Axis of a Multi-Layered Environment and its Application as a Navigation Mesh
- Collective patterns of pedestrians interacting with attractions
- Patterns of cooperation during collective emergencies in the help-or-escape social dilemma
- Cyber-Physical Modeling and Control of Crowd of Pedestrians: A Review and New Framework
- Decision-making processes underlying pedestrian behaviours at signalised crossing: Part 1. The first to step off the kerb
- Modelling vehicle and pedestrian collective dynamics: Challenges and advances
- Phase transitions during fruiting body formation in Myxococcus xanthus
- Defining and finding lifelike entities with a lazy filter
- Avalanches of choice: how stranger-to-stranger interactions shape crowd dynamics
- A macroscopic pedestrian model with variable maximal density
- When soft crystals defy Newton's third law: Non-reciprocal mechanics and dislocation motility
- Self-organized Collective Motion with a Simulated Real Robot Swarm