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Distributed Topology Manipulation to Control Epidemic Spreading Over Networks

机译:分布式拓扑操作可控制网络上的流行病传播

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摘要

This paper considers the problem of network structure manipulation in the absence of a central coordinator that collects network information and makes decisions. The primary focus is on the spectral radius minimization problem by removing/rewiring links to control epidemic spreading over networks. The resulting optimizations are generally combinatorial and NP-hard. The lack of the central base prevents us from solving such problems in a centralized fashion, thus driving the need for distributed computation and collaborative decision-making to support effective topology modification. In this paper, a distributed estimation scheme involving event-based communication and parallel algorithms is developed to enhance network capability against epidemics. Based on this low-complexity estimation algorithm, fully distributed strategies are proposed to enable individuals to sequentially discern the critical in-network contact, and to implement the desired link operation solely. We further extend the acquisitions to a more flexible framework based on a "coevolutionary networks" picture and discuss the optimality of solutions from an algebraic and topological perspective. Extensive simulation examples are presented to demonstrate the effectiveness of the proposed strategies.
机译:本文考虑了在没有收集网络信息并做出决策的中央协调员的情况下网络结构操纵的问题。主要关注点在于频谱半径最小化问题,方法是删除/重新链接以控制网络上的流行病传播。最终的优化通常是组合的和NP难的。缺乏中央基础使我们无法集中解决此类问题,从而推动了对分布式计算和协作决策制定的需求,以支持有效的拓扑修改。在本文中,开发了一种基于事件的通信和并行算法的分布式估计方案,以增强网络的抗流行能力。基于这种低复杂度的估计算法,提出了完全分布式的策略,以使个人能够顺序地识别关键的网络内联系,并仅实现所需的链接操作。我们基于“协同进化网络”图片进一步将采集扩展到更灵活的框架,并从代数和拓扑的角度讨论解决方案的最优性。给出了广泛的仿真示例,以证明所提出策略的有效性。

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