We focus on the node-based epidemic modeling for networks, introduce the propagation medium, and propose a node-based Susceptible-Infected-Recovered-Susceptible (SIRS) epidemic model with infective media. Theoretical investigations show that the endemic equilibrium is globally asymptotically stable. Numerical examples of three typical network structures also verify the theoretical results. Furthermore, comparison between network node degree and its infected percents implies that there is a strong positive correlation between both; namely, the node with bigger degree is infected with more percents. Finally, we discuss the impact of the epidemic spreading rate of media as well as the effective recovered rate on the network average infected st...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
We study a susceptible-infected-recovered (SIR) epidemic model on a network of interacting subpopula...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
We investigate the dynamics of a susceptible infected recovered (SIR) epidemic model on small networ...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
Epidemic propagation on complex networks has been widely investigated, mostly with invariant paramet...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
In this paper, a new susceptible-infected-susceptible model with infective medium is proposed, which...
The spread of a virus or the outbreak of an epidemic are natural examples of stochastic processes. C...
Epidemic propagation on complex networks has been widely investigated, mostly with invariant paramet...
Local interactions on a graph will lead to global dynamic behaviour. In this thesis we focus on two ...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
Local interactions on a graph will lead to global dynamic behaviour. In this thesis we focus on two ...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
We study a susceptible-infected-recovered (SIR) epidemic model on a network of interacting subpopula...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
We investigate the dynamics of a susceptible infected recovered (SIR) epidemic model on small networ...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
Epidemic propagation on complex networks has been widely investigated, mostly with invariant paramet...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
In this paper, a new susceptible-infected-susceptible model with infective medium is proposed, which...
The spread of a virus or the outbreak of an epidemic are natural examples of stochastic processes. C...
Epidemic propagation on complex networks has been widely investigated, mostly with invariant paramet...
Local interactions on a graph will lead to global dynamic behaviour. In this thesis we focus on two ...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
Local interactions on a graph will lead to global dynamic behaviour. In this thesis we focus on two ...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
We study by analytical methods and large scale simulations a dynamical model for the spreading of ep...
We study a susceptible-infected-recovered (SIR) epidemic model on a network of interacting subpopula...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...