School of Applied Mathematics, Shanxi University of Finance and Economics, Taiyuan Shanxi 030006, China.
Complex Systems Research Center, Shanxi University, Taiyuan Shanxi 030006, China.
Math Biosci Eng. 2019 Sep 6;16(6):8092-8108. doi: 10.3934/mbe.2019407.
In the real world, in order to avoid the infection risk, people tend to cut off the links with their infected neighbors, then look for other susceptible individuals to rewire. However, the rewiring process does not occur immediately, but takes some time. We therefore establish a delayed SIS network model with adaptive rewiring mechanism and analyze the long-term steady states for the system with and without the rewiring delay. We find that with the rewiring time, there are infinite equilibria lie on a line in a high-dimensional state space, which is quite different from normal delayed model. The numerical simulation results show that the system approaches to different steady state on the line under the same initial values and different rewiring delays, and the stable limit cycle can appear with the increase of rewiring delay. These surprising results may provide new insights into the study of delayed network epidemic model.
在现实世界中,为了避免感染风险,人们往往会切断与感染邻居的联系,然后寻找其他易感个体重新建立联系。然而,重新建立联系的过程不会立即发生,而是需要一些时间。因此,我们建立了一个具有自适应重连机制的时滞 SIS 网络模型,并分析了有和没有重连延迟的系统的长期稳定状态。我们发现,随着重连时间的增加,在高维状态空间中,有无限个平衡点位于一条线上,这与正常的时滞模型有很大的不同。数值模拟结果表明,在相同的初始值和不同的重连延迟下,系统在该线上趋近于不同的稳定状态,并且随着重连延迟的增加,稳定的极限环可能会出现。这些令人惊讶的结果可能为研究时滞网络传染病模型提供新的视角。