Robust sliding control of SEIR epidemic models (Q1717668)
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scientific article; zbMATH DE number 7015713
| Language | Label | Description | Also known as |
|---|---|---|---|
| English | Robust sliding control of SEIR epidemic models |
scientific article; zbMATH DE number 7015713 |
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Robust sliding control of SEIR epidemic models (English)
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8 February 2019
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Summary: This paper is aimed at designing a robust vaccination strategy capable of eradicating an infectious disease from a population regardless of the potential uncertainty in the parameters defining the disease. For this purpose, a control theoretic approach based on a sliding-mode control law is used. Initially, the controller is designed assuming certain knowledge of an upper-bound of the uncertainty signal. Afterwards, this condition is removed while an adaptive sliding control system is designed. The closed-loop properties are proved mathematically in the nonadaptive and adaptive cases. Furthermore, the usual sign function appearing in the sliding-mode control is substituted by the saturation function in order to prevent chattering. In addition, the properties achieved by the closed-loop system under this variation are also stated and proved analytically. The closed-loop system is able to attain the control objective regardless of the parametric uncertainties of the model and the lack of \textit{a priori} knowledge on the system.
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