In this paper the problem of modeling and controlling the measles epidemic spread is faced. A new model is proposed and analysed; besides the categories usually considered in measles modeling, the susceptible, the exposed, the infected, the removed and, less frequently, the quarantine individuals, two new categories are herein introduced: the immunosuppressed subjects, that can not be vaccinated, and the patients with an additional complication, not risky by itself but dangerous if caught togeter with the measles. These two novelties are taken into account in designing and scheduling suitably control actions such as vaccination, whenever possible, prevention, quarantine and treatment, when limited resources are available. An analysis of the model is developed and the optimal control strategies are compared with other not optimized actions. By using the Pontryagin principle, it is shown the prevailing role of the vaccination in guaranteeing the protection to immunosuppressed individuals, as well as the importance of a prompt response of the society when an epidemic spread occurs, such as the quarantine intervention.

Analysis, Simulation and Control of a New Measles Epidemic Model / DI GIAMBERARDINO, Paolo; Iacoviello, Daniela. - 1:(2019), pp. 550-559. (Intervento presentato al convegno 16th International Conference on Informatics in Control, Automation and Robotics tenutosi a Prague; Czech Republic) [10.5220/0007934405500559].

Analysis, Simulation and Control of a New Measles Epidemic Model

Di Giamberardino Paolo
Primo
;
Iacoviello Daniela
Secondo
2019

Abstract

In this paper the problem of modeling and controlling the measles epidemic spread is faced. A new model is proposed and analysed; besides the categories usually considered in measles modeling, the susceptible, the exposed, the infected, the removed and, less frequently, the quarantine individuals, two new categories are herein introduced: the immunosuppressed subjects, that can not be vaccinated, and the patients with an additional complication, not risky by itself but dangerous if caught togeter with the measles. These two novelties are taken into account in designing and scheduling suitably control actions such as vaccination, whenever possible, prevention, quarantine and treatment, when limited resources are available. An analysis of the model is developed and the optimal control strategies are compared with other not optimized actions. By using the Pontryagin principle, it is shown the prevailing role of the vaccination in guaranteeing the protection to immunosuppressed individuals, as well as the importance of a prompt response of the society when an epidemic spread occurs, such as the quarantine intervention.
2019
16th International Conference on Informatics in Control, Automation and Robotics
epidemic modeling; system analysis; optimal control
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Analysis, Simulation and Control of a New Measles Epidemic Model / DI GIAMBERARDINO, Paolo; Iacoviello, Daniela. - 1:(2019), pp. 550-559. (Intervento presentato al convegno 16th International Conference on Informatics in Control, Automation and Robotics tenutosi a Prague; Czech Republic) [10.5220/0007934405500559].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1308985
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