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Propagation, cascades, and agreement dynamics in complex communication and social networks.

机译:复杂的通讯和社交网络中的传播,级联和协议动态。

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摘要

Many modern and important technological, social, information and infrastructure systems can be viewed as complex systems with a large number of interacting components. Models of complex networks and dynamical interactions, as well as their applications are of fundamental interests in many aspects. Here, several stylized models of multiplex propagation and opinion dynamics are investigated on complex and empirical social networks.;We first investigate cascade dynamics in threshold-controlled (multiplex) propagation on random geometric networks. We find that such local dynamics can serve as an efficient, robust, and reliable prototypical activation protocol in sensor networks in responding to various alarm scenarios. We also consider the same dynamics on a modified network by adding a few long-range communication links, resulting in a small-world network. We find that such construction can further enhance and optimize the speed of the network's response, while keeping energy consumption at a manageable level.;We also investigate a prototypical agent-based model, the Naming Game, on two-dimensional random geometric networks. The Naming Game [A. Baronchelli et al., J. Stat. Mech.: Theory Exp. (2006) P06014.] is a minimal model, employing local communications that captures the emergence of shared communication schemes (languages) in a population of autonomous semiotic agents. Implementing the Naming Games with local broadcasts on random geometric graphs, serves as a model for agreement dynamics in large-scale, autonomously operating wireless sensor networks. Further, it captures essential features of the scaling properties of the agreement process for spatially-embedded autonomous agents. Among the relevant observables capturing the temporal properties of the agreement process, we investigate the cluster-size distribution and the distribution of the agreement times, both exhibiting dynamic scaling. We also present results for the case when a small density of long-range communication links are added on top of the random geometric graph, resulting in a "small-world"-like network and yielding a significantly reduced time to reach global agreement. We construct a finite-size scaling analysis for the agreement times in this case.;When applying the model of Naming Game on empirical social networks, this stylized agent-based model captures essential features of agreement dynamics in a network of autonomous agents, corresponding to the development of shared classification schemes in a network of artificial agents or opinion spreading and social dynamics in social networks. Our study focuses on the impact that communities in the underlying social graphs have on the outcome of the agreement process. We find that networks with strong community structure hinder the system from reaching global agreement; the evolution of the Naming Game in these networks maintains clusters of coexisting opinions indefinitely. Further, we investigate agent-based network strategies to facilitate convergence to global consensus.
机译:许多现代和重要的技术,社会,信息和基础设施系统可以看作是具有大量交互组件的复杂系统。复杂网络和动态交互的模型及其应用在许多方面都具有根本的意义。在这里,研究了复杂的和经验的社交网络上多种传播和舆论动力学的程式化模型。我们首先研究了随机几何网络上阈值控制(多重)传播中的级联动力学。我们发现这样的局部动态可以在传感器网络中响应各种警报情况,充当有效,鲁棒和可靠的原型激活协议。通过添加一些远程通信链接,我们还考虑了修改后的网络上的相同动态,从而形成了一个小世界网络。我们发现这种构造可以进一步提高和优化网络响应速度,同时将能耗保持在可管理的水平。我们还研究了基于原型代理的二维随机几何网络模型Naming Game。命名游戏[A. Baronchelli et al。,J. Stat。机械:理论经验。 (2006)P06014。]是一个最小模型,它采用了本地通信,该通信捕获了在自治的符号代理群体中共享通信方案(语言)的出现。使用随机几何图形上的本地广播实施命名游戏,可作为大规模,自主运行的无线传感器网络中协议动态的模型。此外,它还捕获了针对空间嵌入的自治代理的协议过程的缩放属性的基本特征。在捕获协议过程的时间属性的相关可观察变量中,我们研究了集群大小分布和协议时间分布,两者均表现出动态缩放。我们还提供了在随机几何图的顶部添加少量密度的远程通信链接,从而形成类似“小世界”的网络并显着减少达成全局协议的时间的情况的结果。在这种情况下,我们为协议时间构建了一个有限规模的比例分析。当在经验社交网络上应用命名博弈模型时,这种基于程式化主体的模型捕获了自治主体网络中协议动态的基本特征,对应于人工代理商网络中的共享分类方案的开发或社交网络中的观点传播和社会动态。我们的研究重点在于底层社会图中的社区对协议过程结果的影响。我们发现具有强大社区结构的网络阻碍了该系统达成全球协议;这些网络中的命名博弈的演变无限期地维持着并存的观点集群。此外,我们研究了基于代理的网络策略,以促进向全球共识的融合。

著录项

  • 作者

    Lu, Qiming.;

  • 作者单位

    Rensselaer Polytechnic Institute.;

  • 授予单位 Rensselaer Polytechnic Institute.;
  • 学科 Engineering Electronics and Electrical.;Physics General.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 123 p.
  • 总页数 123
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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