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A realistic agent-based simulation model for COVID-19 based on a traffic simulation and mobile phone data

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arxiv 2011.11453 v1 pith:JT66GJ2H submitted 2020-11-23 physics.soc-ph

A realistic agent-based simulation model for COVID-19 based on a traffic simulation and mobile phone data

classification physics.soc-ph
keywords modelcontactdynamicsinfectionmobilityactivityconsequencesdata
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Epidemiological simulations as a method are used to better understand and predict the spreading of infectious diseases, for example of COVID-19. This paper presents an approach that combines person-centric data-driven human mobility modelling with a mechanistic infection model and a person-centric disease progression model. The model includes the consequences of disease import, of changed activity participation rates over time (coming from mobility data), of masks, of indoors vs.\ outdoors leisure activities, and of contact tracing. Results show that the model is able to credibly track the infection dynamics in Berlin (Germany). The model can be used to understand the contributions of different activity types to the infection dynamics over time. The model clearly shows the effects of contact reductions, school closures/vacations, or the effect of moving leisure activities from outdoors to indoors in fall. Sensitivity tests show that all ingredients of the model are necessary to track the current infection dynamics. One interesting result from the mobility data is that behavioral changes of the population mostly happened \textit{before} the government-initiated so-called contact ban came into effect. Similarly, people started drifting back to their normal activity patterns \emph{before} the government officially reduced the contact ban. Our work shows that is is possible to build detailed epidemiological simulations from microscopic mobility models relatively quickly. They can be used to investigate mechanical aspects of the dynamics, such as the transmission from political decisions via human behavior to infections, consequences of different lockdown measures, consequences of wearing masks in certain situations, or contact tracing.

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  1. Mobility and Contact Networks Shape Epidemic Outcomes: A Large-Scale Agent-Based Modeling Study

    physics.soc-ph 2026-07 conditional novelty 5.0

    In an agent-based epidemic model, swapping only the mobility assumptions changes peak incidence from about 350k to 650k infected and shifts the peak by up to 5 days.