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Competition of simple and complex adoption on interdependent networks

机译:相互依存网络的简单和复杂采用竞争

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摘要

We consider the competition of two mechanisms for adoption processes: a so-called complex threshold dynamics and a simple susceptible-infected-susceptible (SIS) model. Separately, these mechanisms lead, respectively, to first-order and continuous transitions between nonadoption and adoption phases. We consider two interconnected layers. While all nodes on the first layer follow the complex adoption process, all nodes on the second layer follow the simple adoption process. Coupling between the two adoption processes occurs as a result of the inclusion of some additional interconnections between layers. We find that the transition points and also the nature of the transitions are modified in the coupled dynamics. In the complex adoption layer, the critical threshold required for extension of adoption increases with interlayer connectivity whereas in the case of an isolated single network it would decrease with average connectivity. In addition, the transition can become continuous depending on the detailed interlayer and intralayer connectivities. In the SIS layer, any interlayer connectivity leads to the extension of the adopter phase. Besides, a new transition appears as a sudden drop of the fraction of adopters in the SIS layer. The main numerical findings are described by a mean-field type analytical approach appropriately developed for the threshold-SIS coupled system.
机译:我们考虑了两种采用过程机制的竞争:所谓的复杂阈值动力学和简单的敏感感染易感(SIS)模型。分别地,这些机制分别引导到非偏移和采用阶段之间的一流和连续转变。我们考虑两个互连层。虽然第一层上的所有节点遵循复杂的采用过程,但第二层上的所有节点都遵循简单的采用过程。由于在层之间包含一些附加互连而发生两个采用过程之间的耦合。我们发现过渡点以及转换的性质在耦合动态中修改。在复杂的采用层中,延长采用所需的临界阈值随层间连通而增加,而在孤立的单个网络的情况下,它将随着平均连接而减小。此外,根据详细的中间层和腔内连接性,过渡可以变得连续。在SIS层中,任何层间连通性导致采用过程的延伸。此外,新的过渡表现为SIS层中采用分数的突然下降。主要数值测定由适当为阈值-SIS耦合系统开发的平均场型分析方法描述。

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