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We study the role of vaccine acceptance in controlling the spread of COVID-19 in the US using AI-driven agent-based models. Our study uses a 288 million node social contact network spanning all 50 US states plus Washington DC, comprised of 3300 counties, with 12.59 billion daily interactions. The highly-resolved agent-based models use realistic information about disease progression, vaccine uptake, production schedules, acceptance trends, prevalence, and social distancing guidelines. Developing a national model at this resolution that is driven by realistic data requires a complex scalable workflow, model calibration, simulation, and analytics components. Our workflow optimizes the total execution time andmore »Free, publicly-accessible full text available December 15, 2022
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Borchering, Rebecca K. ; Viboud, Cécile ; Howerton, Emily ; Smith, Claire P. ; Truelove, Shaun ; Runge, Michael C. ; Reich, Nicholas G. ; Contamin, Lucie ; Levander, John ; Salerno, Jessica ; et al ( , MMWR. Morbidity and Mortality Weekly Report)null (Ed.)
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Czub, Mateusz P. ; Zhang, Brian ; Chiarelli, M. Paul ; Majorek, Karolina A. ; Joe, Layton ; Porebski, Przemyslaw J. ; Revilla, Alina ; Wu, Weiming ; Becker, Daniel P. ; Minor, Wladek ; et al ( , Biochemistry)