Numerical and stability analysis of the transmission dynamics of SVIR epidemic model with standard incidence rate / Ogunmiloro O.M., Abedo F.O., and Kareem H.A.

In this article, a Susceptible - Vaccinated - Infected - Recovered (SVIR) model is formulated and analysed using comprehensive mathematical techniques. The vaccination class is primarily considered as means of controlling the disease spread. The basic reproduction number (Ro) of the model is obtaine...

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Main Authors: Ogunmiloro, O.M (Author), Abedo, F.O (Author), Kareem, H.A (Author)
Format: Book
Published: Penerbit UiTM, 2019-12.
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100 1 0 |a Ogunmiloro, O.M.  |e author 
700 1 0 |a Abedo, F.O.  |e author 
700 1 0 |a Kareem, H.A.  |e author 
245 0 0 |a Numerical and stability analysis of the transmission dynamics of SVIR epidemic model with standard incidence rate / Ogunmiloro O.M., Abedo F.O., and Kareem H.A. 
260 |b Penerbit UiTM,   |c 2019-12. 
500 |a https://ir.uitm.edu.my/id/eprint/61452/1/61452.pdf 
520 |a In this article, a Susceptible - Vaccinated - Infected - Recovered (SVIR) model is formulated and analysed using comprehensive mathematical techniques. The vaccination class is primarily considered as means of controlling the disease spread. The basic reproduction number (Ro) of the model is obtained, where it was shown that if Ro<1, at the model equilibrium solutions when infection is present and absent, the infection- free equilibrium is both locally and globally asymptotically stable. Also, if Ro>1, the endemic equilibrium solution is locally asymptotically stable. Furthermore, the analytical solution of the model was carried out using the Differential Transform Method (DTM) and Runge - Kutta fourth-order method. Numerical simulations were carried out to validate the theoretical results. 
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690 |a Analysis 
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655 7 |a PeerReviewed  |2 local 
787 0 |n https://ir.uitm.edu.my/id/eprint/61452/ 
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