This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (susceptible plus infected plus infectious plus removed populations) propagation disease model. The model takes into account the total population amounts as a refrain for the illness transmission since its increase makes more difficult contacts among the susceptible and infected. The control objective is the asymptotically tracking of the removed-by-immunity population to the total population while achieving simultaneously the remaining population (i.e., susceptible plus infected plus infectious) to asymptotically converge to zero. A state observer is used to estimate the true various partial populations of the susceptible, infected, infectious...
This paper analyses an SIRS epidemic model with the vaccination of susceptible individuals and treat...
AbstractIn this paper, we discuss the elementary properties of some simple SI, SR, SIR and SEIR epid...
This study presents a family of stochastic models for the dynamics of influenza in a closed human po...
This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (s...
This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (s...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a feedback linearization-based control strategy for a SEIR (susceptible plus inf...
This paper studies some basic properties of an SEIR (Susceptible-Exposed-Infectious-Recovered) epide...
A vaccination strategy based on the state feedback control theory is proposed. The objective is to f...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper analyses an SIRS epidemic model with the vaccination of susceptible individuals and treat...
AbstractIn this paper, we discuss the elementary properties of some simple SI, SR, SIR and SEIR epid...
This study presents a family of stochastic models for the dynamics of influenza in a closed human po...
This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (s...
This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (s...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper presents a feedback linearization-based control strategy for a SEIR (susceptible plus inf...
This paper studies some basic properties of an SEIR (Susceptible-Exposed-Infectious-Recovered) epide...
A vaccination strategy based on the state feedback control theory is proposed. The objective is to f...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
In this paper, the author proposes a new SEIRS model that generalizes several classical deterministi...
This paper presents a vaccination strategy for fighting against the propagation of epidemic diseases...
This paper analyses an SIRS epidemic model with the vaccination of susceptible individuals and treat...
AbstractIn this paper, we discuss the elementary properties of some simple SI, SR, SIR and SEIR epid...
This study presents a family of stochastic models for the dynamics of influenza in a closed human po...