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20082013
most citedVaccination rules for a true-mass action SEIR epidemic model based on an observer synthesis. Preliminary results

2 citations · 5 across the 24 of their papers we have counts for

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Showing 2011 · math.DSShow all

6 papers · 2 filters

math.DS2011

Feedback Stabilization of a Class of Perturbed Nonlinear Autonomous Difference Equations

M. De La Sen

This paper investigates the local asymptotic stabilization of a very general class of instable autonomous nonlinear difference equations which are subject to perturbed dynamics whi…

math.DS20111 cited

Basic Vaccination Control Techniques for a General True -Mass Action SEIR Model

M. De la Sen, S. Alonso-Quesada

This paper presents several simple linear vaccination-based control strategies for a SEIR (susceptible plus infected plus infectious plus removed populations) propagation disease m…

math.DS20112 cited

Vaccination rules for a true-mass action SEIR epidemic model based on an observer synthesis. Preliminary results

M. De la Sen, A. Ibeas, S. Alonso-Quesada

This paper presents a simple continuous-time linear vaccination-based control strategy for a SEIR (susceptible plus infected plus infectious plus removed populations) propagation d…

math.DS20111 cited

Some vaccination strategies for the SEIR epidemic model. Preliminary results

M. De la Sen, A. Ibeas, S. Alonso-Quesada

This paper presents a vaccination-based control strategy for a SEIR (susceptible plus infected plus infectious plus removed populations) propagation disease model. The model takes…

math.DS2011

Vaccination strategies for SEIR models using feedback linearization. Preliminary results

M. De la Sen, A. Ibeas, S. Alonso-Quesada

A linearization-based feedback-control strategy for a SEIR epidemic model is discussed. The vaccination objective is the asymptotically tracking of the removed-by-immunity populati…

math.DS2011

On a SIS model with impulsive effects

M. De la Sen, A. Ibeas, S. Alonso-Quesada

This paper is concerned with a SIS (susceptible, infected and susceptible populations) propagation disease model with a nonlinear incidence rate and eventual impulsive (non- necess…