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双层多重网络中的传播控制

Spreading Control in Two-Layer Multiplex Networks.

作者信息

Bernal Jaquez Roberto, Alarcón Ramos Luis Angel, Schaum Alexander

机构信息

Department of Applied Mathematics and Systems, Universidad Autónoma Metropolitana, Cuajimalpa, Mexico-City 05348, Mexico.

Postgraduate in Natural Sciences and Engineering, Universidad Autónoma Metropolitana, Cuajimalpa, Mexico-City 05348, Mexico.

出版信息

Entropy (Basel). 2020 Oct 15;22(10):1157. doi: 10.3390/e22101157.

Abstract

The problem of controlling a spreading process in a two-layer multiplex networks in such a way that the extinction state becomes a global attractor is addressed. The problem is formulated in terms of a Markov-chain based susceptible-infected-susceptible (SIS) dynamics in a complex multilayer network. The stabilization of the extinction state for the nonlinear discrete-time model by means of appropriate adaptation of system parameters like transition rates within layers and between layers is analyzed using a dominant linear dynamics yielding global stability results. An answer is provided for the central question about the essential changes in the step from a single to a multilayer network with respect to stability criteria and the number of nodes that need to be controlled. The results derived rigorously using mathematical analysis are verified using statical evaluations about the number of nodes to be controlled and by simulation studies that illustrate the stability property of the multilayer network induced by appropriate control action.

摘要

研究了以灭绝状态成为全局吸引子的方式控制双层多重网络中传播过程的问题。该问题是根据复杂多层网络中基于马尔可夫链的易感-感染-易感(SIS)动力学来表述的。利用产生全局稳定性结果的主导线性动力学,分析了通过适当调整系统参数(如层内和层间的转移率)来实现非线性离散时间模型灭绝状态的稳定化。针对从单层网络到多层网络在稳定性标准和需要控制的节点数量方面的本质变化这一核心问题给出了答案。通过关于需要控制的节点数量的静态评估以及说明适当控制作用所诱导的多层网络稳定性特性的模拟研究,验证了使用数学分析严格推导得出的结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1752/7597322/811753e41c84/entropy-22-01157-g001.jpg

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