Your browser doesn't support javascript.
Generalized epidemiological compartmental models: guaranteed bounds via optimal control
60th IEEE Conference on Decision and Control (CDC) ; : 3532-3537, 2021.
Article in English | Web of Science | ID: covidwho-1868525
ABSTRACT
We consider a class of epidemiological models in which a compartmental linear system, including various categories of infected individuals (e.g. asymptomatic, symptomatic, quarantined), is fed back by a positive feedback, representing contagion. The positive feedback gain decreases (in a sort of negative feedback) as the epidemic evolves, due to the decrease in the number of susceptible individuals. We first propose a convergence result based on a special copositive Lyapunov function. Then, we address a major problem for this class of systems the deep uncertainty affecting parameter values. We face the problem adopting techniques from optimal and robust control theory to assess the sensitivity of the model. For this class of systems, the optimal control solution has a peculiar decoupling property that no shooting procedure is required. Finally, we exploit the obtained bounds to assess the effectiveness of possible epidemic control strategies, including intermittent restrictions adopted during the COVID-19 pandemic.

Full text: Available Collection: Databases of international organizations Database: Web of Science Type of study: Observational study Language: English Journal: 60th IEEE Conference on Decision and Control (CDC) Year: 2021 Document Type: Article

Similar

MEDLINE

...
LILACS

LIS


Full text: Available Collection: Databases of international organizations Database: Web of Science Type of study: Observational study Language: English Journal: 60th IEEE Conference on Decision and Control (CDC) Year: 2021 Document Type: Article