A fractional-order epidemic model with time delay is considered. Firstly, stability of the disease-free equilibrium point and endemic equilibrium point is studied. Then, by choosing the time delay as a bifurcation parameter, the existence of Hopf bifurcation is studied. Finally, numerical simulations are given to illustrate the effectiveness and feasibility of theoretical results
In this article, we study a reaction-diffusion system for a SIRS epidemic model with time delay and...
In this paper, first a third degree transcendental polynomial is studied and the distribution of its...
summary:We study a mathematical model which was originally suggested by Greenhalgh and Das and takes...
Epidemic models are normally used to describe the spread of infectious diseases. In this paper, we w...
A delayed epidemic model with nonlinear incidence rate which depends on the ratio of the numbers of ...
Abstract: In this paper, we study the dynamics of a fractional-order epidemic model with general no...
In this paper, we study the dynamics of a fractional-order epidemic model with general nonlinear inc...
A SIS epidemic model proposed by Cooke et al. [2] is investigated. Using time delay as the control p...
Mathematical modeling plays a vital role in the epidemiology of infectious diseases. Policy makers c...
In this paper, we study the dynamics of a fractional-order epidemic model with general nonlinear in...
In this paper, we investigate the qualitative behavior of a fractional-order susceptible-exposed-inf...
We study a fractional-order delayed predator-prey model with Holling–Tanner-type functional response...
An susceptible-infective-removed epidemic model incorporating media coverage with time delay is prop...
Abstract In this paper, we analyze a delayed SEIR epidemic model in which the latent and infected st...
In this paper, the bifurcation control of a fractional-order mosaic virus infection model for Jatrop...
In this article, we study a reaction-diffusion system for a SIRS epidemic model with time delay and...
In this paper, first a third degree transcendental polynomial is studied and the distribution of its...
summary:We study a mathematical model which was originally suggested by Greenhalgh and Das and takes...
Epidemic models are normally used to describe the spread of infectious diseases. In this paper, we w...
A delayed epidemic model with nonlinear incidence rate which depends on the ratio of the numbers of ...
Abstract: In this paper, we study the dynamics of a fractional-order epidemic model with general no...
In this paper, we study the dynamics of a fractional-order epidemic model with general nonlinear inc...
A SIS epidemic model proposed by Cooke et al. [2] is investigated. Using time delay as the control p...
Mathematical modeling plays a vital role in the epidemiology of infectious diseases. Policy makers c...
In this paper, we study the dynamics of a fractional-order epidemic model with general nonlinear in...
In this paper, we investigate the qualitative behavior of a fractional-order susceptible-exposed-inf...
We study a fractional-order delayed predator-prey model with Holling–Tanner-type functional response...
An susceptible-infective-removed epidemic model incorporating media coverage with time delay is prop...
Abstract In this paper, we analyze a delayed SEIR epidemic model in which the latent and infected st...
In this paper, the bifurcation control of a fractional-order mosaic virus infection model for Jatrop...
In this article, we study a reaction-diffusion system for a SIRS epidemic model with time delay and...
In this paper, first a third degree transcendental polynomial is studied and the distribution of its...
summary:We study a mathematical model which was originally suggested by Greenhalgh and Das and takes...