A nonlinear PI-type control strategy is designed in order to minimize the HIV concentration in blood plasma, via medical drug injection, under the framework of bounded uncertain input disturbances. For control design it is considered a simplified mathematical model of the virus infection as a benchmark. The model is based on mass balances of healthy cells, infected cells, and the virus concentrations. The proposed controller contains a nonlinear feedback PI structure of bounded functions of the regulation error. The closed-loop stability of the system is analyzed via Lyapunov technique, in which robustness against system disturbances is demonstrated. Numerical experiments show a satisfactory performance of the proposed methodology as a HIV ...
In this paper, a robust adaptive controller subject to decoupled sliding mode controller as a superv...
The main goal of this study was to develop a theoretical short- and long-term optimal control treatm...
AbstractA system of ordinary differential equation, which describes the interaction of HIV and T cel...
"A nonlinear PI-type control strategy is designed in order to minimize the HIV concentration in bloo...
This paper presents an algorithm for nonlinear adaptive control of the viral load in HIV-1 infection...
This paper presents an algorithm for nonlinear adaptive control of the viral load in HIV-1 infection...
This paper presents algorithms for nonlinear and adaptive control of the viral load in a HIV-1 infec...
In this paper, we propose to initiate the HIV therapy based on the Lyapunov exponents of the system....
In this paper, we formulate a dynamic mathematical model that describes the interaction of the immun...
International audienceAn increasing number of sophisticated control algorithms become available in t...
In this chapter, we numerically show that the dynamics of the HIV system is sensitive to both the in...
Using a singular perturbation approximation, a nonlinear state-space model of HIV-1 infection, havin...
Abstract: It is known that HIV (Human Immunodeficiency Virus) infection, which causes AIDS after som...
A generic nonlinear mathematical model describing the human immunological dynamics is used to design...
A system of ordinary differential equation, which describes the interaction of HIV and T cells in th...
In this paper, a robust adaptive controller subject to decoupled sliding mode controller as a superv...
The main goal of this study was to develop a theoretical short- and long-term optimal control treatm...
AbstractA system of ordinary differential equation, which describes the interaction of HIV and T cel...
"A nonlinear PI-type control strategy is designed in order to minimize the HIV concentration in bloo...
This paper presents an algorithm for nonlinear adaptive control of the viral load in HIV-1 infection...
This paper presents an algorithm for nonlinear adaptive control of the viral load in HIV-1 infection...
This paper presents algorithms for nonlinear and adaptive control of the viral load in a HIV-1 infec...
In this paper, we propose to initiate the HIV therapy based on the Lyapunov exponents of the system....
In this paper, we formulate a dynamic mathematical model that describes the interaction of the immun...
International audienceAn increasing number of sophisticated control algorithms become available in t...
In this chapter, we numerically show that the dynamics of the HIV system is sensitive to both the in...
Using a singular perturbation approximation, a nonlinear state-space model of HIV-1 infection, havin...
Abstract: It is known that HIV (Human Immunodeficiency Virus) infection, which causes AIDS after som...
A generic nonlinear mathematical model describing the human immunological dynamics is used to design...
A system of ordinary differential equation, which describes the interaction of HIV and T cells in th...
In this paper, a robust adaptive controller subject to decoupled sliding mode controller as a superv...
The main goal of this study was to develop a theoretical short- and long-term optimal control treatm...
AbstractA system of ordinary differential equation, which describes the interaction of HIV and T cel...