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Optimal resource diffusion for suppressing disease spreading in multiplex networks

机译:抑制多路复用网络中抑制疾病的最佳资源扩散

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Resource diffusion is a ubiquitous phenomenon, but how it impacts epidemic spreading has received little study. We propose a model that couples epidemic spreading and resource diffusion in multiplex networks. The spread of disease in a physical contact layer and the recovery of the infected nodes are both strongly dependent upon resources supplied by their counterparts in the social layer. The generation and diffusion of resources in the social layer are in turn strongly dependent upon the state of the nodes in the physical contact layer. Resources diffuse preferentially or randomly in this model. To quantify the degree of preferential diffusion, a bias parameter that controls the resource diffusion is proposed. We conduct extensive simulations and find that the preferential resource diffusion can change phase transition type of the fraction of infected nodes. When the degree of interlayer correlation is below a critical value, increasing the bias parameter changes the phase transition from double continuous to single continuous. When the degree of interlayer correlation is above a critical value, the phase transition changes from multiple continuous to first discontinuous and then to hybrid. We find hysteresis loops in the phase transition. We also find that there is an optimal resource strategy at each fixed degree of interlayer correlation under which the threshold reaches a maximum and the disease can be maximally suppressed. In addition, the optimal controlling parameter increases as the degree of inter-layer correlation increases.
机译:资源扩散是一种普遍存在的现象,但它如何影响流行蔓延已经接受了很少的研究。我们提出了一种耦合流行扩展和资源扩散在多路复用网络中的模型。物理接触层中的疾病传播和受感染节点的恢复都强烈依赖于社会层中的对应物提供的资源。社交层中资源的生成和扩散依赖于物理接触层中节点的状态。资源在本模型中优先或随机地扩散。为了量化优先扩散程度,提出了一种控制资源扩散的偏置参数。我们进行广泛的模拟,发现优先的资源扩散可以改变感染节点的分数的相变类型。当层间相关程度低于临界值时,增加偏置参数改变从双连续的相位过渡到单连续连续。当层间相关程度高于临界值时,相变从多个连续变为首先不连续,然后变为混合。我们在阶段过渡中找到滞后环。我们还发现,在每个固定的层间相关程度上存在最佳资源策略,在该层间相关性下,阈值达到最大值,并且可以最大地抑制疾病。另外,随着层间相关性的增加增加,最佳控制参数增加。

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