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Distributed Control and the Lyapunov Characteristic Exponents in the Model of Infectious Diseases
by
Volinsky, Irina
, Rusakov, S.
, Chirkov, M.
, Bershadsky, M.
, Domoshnitsky, Alexander I.
in
Analysis
/ Antigens
/ Care and treatment
/ Communicable diseases
/ Computer simulation
/ Differential equations
/ Infectious diseases
/ Mathematical models
/ Ordinary differential equations
2019
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Distributed Control and the Lyapunov Characteristic Exponents in the Model of Infectious Diseases
by
Volinsky, Irina
, Rusakov, S.
, Chirkov, M.
, Bershadsky, M.
, Domoshnitsky, Alexander I.
in
Analysis
/ Antigens
/ Care and treatment
/ Communicable diseases
/ Computer simulation
/ Differential equations
/ Infectious diseases
/ Mathematical models
/ Ordinary differential equations
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Distributed Control and the Lyapunov Characteristic Exponents in the Model of Infectious Diseases
by
Volinsky, Irina
, Rusakov, S.
, Chirkov, M.
, Bershadsky, M.
, Domoshnitsky, Alexander I.
in
Analysis
/ Antigens
/ Care and treatment
/ Communicable diseases
/ Computer simulation
/ Differential equations
/ Infectious diseases
/ Mathematical models
/ Ordinary differential equations
2019
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Distributed Control and the Lyapunov Characteristic Exponents in the Model of Infectious Diseases
Journal Article
Distributed Control and the Lyapunov Characteristic Exponents in the Model of Infectious Diseases
2019
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Overview
The Marchuk model of infectious diseases is considered. Distributed control to make convergence to stationary point faster is proposed. Medically, this means that treatment time can be essentially reduced. Decreasing the concentration of antigen, this control facilitates the patient’s condition and gives a certain new idea of treating the disease. Our approach involves the analysis of integro-differential equations. The idea of reducing the system of integro-differential equations to a system of ordinary differential equations is used. The final results are given in the form of simple inequalities on the parameters. The results of numerical calculations of simulation models and data comparison in the case of using distributive control and in its absence are given.
Publisher
Hindawi Publishing Corporation,Hindawi,John Wiley & Sons, Inc,Wiley
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