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Emergence of Blind Areas in Information Spreading

机译:信息传播盲区的出现

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摘要

Recently, contagion-based (disease, information, etc.) spreading on social networks has been extensively studied. In this paper, other than traditional full interaction, we propose a partial interaction based spreading model, considering that the informed individuals would transmit information to only a certain fraction of their neighbors due to the transmission ability in real-world social networks. Simulation results on three representative networks (BA, ER, WS) indicate that the spreading efficiency is highly correlated with the network heterogeneity. In addition, a special phenomenon, namely Information Blind Areas where the network is separated by several information-unreachable clusters, will emerge from the spreading process. Furthermore, we also find that the size distribution of such information blind areas obeys power-law-like distribution, which has very similar exponent with that of site percolation. Detailed analyses show that the critical value is decreasing along with the network heterogeneity for the spreading process, which is complete the contrary to that of random selection. Moreover, the critical value in the latter process is also larger than that of the former for the same network. Those findings might shed some lights in in-depth understanding the effect of network properties on information spreading.
机译:最近,在社交网络上基于传播的传播(疾病,信息等)已得到广泛研究。在本文中,除了传统的完全互动之外,我们还提出了一种基于局部互动的传播模型,考虑到由于现实世界中社交网络的传播能力,被告知的个人将信息仅传播给邻居的特定部分。在三个代表性网络(BA,ER,WS)上的仿真结果表明,扩展效率与网络异质性高度相关。此外,从传播过程中会出现一种特殊现象,即信息盲区,其中的网络被多个信息无法到达的集群隔开。此外,我们还发现,此类信息盲区的大小分布服从幂律式分布,与站点渗透具有相似的指数。详细的分析表明,对于扩展过程,临界值随着网络异质性的增加而降低,这与随机选择相反。而且,对于相同的网络,后一过程中的临界值也比前者大。这些发现可能有助于深入了解网络属性对信息传播的影响。

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