: Given the severe impact of COVID-19 on several societal levels, it is of crucial importance to model the impact of restriction measures on the pandemic evolution, so that governments are able to make informed decisions. Even though there have been countless attempts to propose diverse models since the rise of the outbreak, the increase in data availability and start of vaccination campaigns calls for updated models and studies. Furthermore, most of the works are focused on a very particular place or application and we strive to attain a more general model, resorting to data from different countries. In particular, we compare Great Britain and Israel, two highly different scenarios in terms of vaccination plans and social structure. We build a network-based model, complex enough to model different scenarios of government-mandated restrictions, but generic enough to be applied to any population. To ease the computational load we propose a decomposition strategy for our model.
A hybrid compartmental model with a case study of COVID-19 in Great Britain and Israel / Malaspina, Greta; Racković, Stevo; Valdeira, Filipa. - In: JOURNAL OF MATHEMATICS IN INDUSTRY. - ISSN 2190-5983. - ELETTRONICO. - 13:(2023), pp. 0-0. [10.1186/s13362-022-00130-1]
A hybrid compartmental model with a case study of COVID-19 in Great Britain and Israel
Malaspina, Greta
;
2023
Abstract
: Given the severe impact of COVID-19 on several societal levels, it is of crucial importance to model the impact of restriction measures on the pandemic evolution, so that governments are able to make informed decisions. Even though there have been countless attempts to propose diverse models since the rise of the outbreak, the increase in data availability and start of vaccination campaigns calls for updated models and studies. Furthermore, most of the works are focused on a very particular place or application and we strive to attain a more general model, resorting to data from different countries. In particular, we compare Great Britain and Israel, two highly different scenarios in terms of vaccination plans and social structure. We build a network-based model, complex enough to model different scenarios of government-mandated restrictions, but generic enough to be applied to any population. To ease the computational load we propose a decomposition strategy for our model.| File | Dimensione | Formato | |
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s13362-022-00130-1.pdf
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