TOWER:网络增强弹性的拓扑优化

Enrique de la Hoz, J. M. Giménez-Guzmán, German Lopez-Civera, Ivan Marsá-Maestre, David Orden
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引用次数: 0

摘要

当今社会越来越依赖于关键的基础设施。关键网络基础设施(CNI)是指通信网络,其中断会对包括关键基础设施在内的其他系统造成严重影响。在这项工作中,我们提出了TOWER,这是一个框架,用于提供适当的战略,以优化cni的服务提供和系统弹性。TOWER的目标是能够在遭受恶意攻击的情况下为cni计算新的网络拓扑。为了做到这一点,TOWER考虑了CNI的风险分析、网络物理IDS的结果和网络的多层模型,考虑了所有现有的依赖关系。TOWER分析网络结构,以确定获得网络拓扑的最佳策略,同时考虑到现有的依赖关系和在并非所有需求都能满足时潜在的利益冲突。最后,提出了TOWER进一步发展的方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TOWER: Topology Optimization for netWork Enhanced Resilience
Nowadays society is more and more dependent on critical infrastructures. Critical network infrastructures (CNI) are communication networks whose disruption can create a severe impact on other systems including critical infrastructures. In this work, we propose TOWER, a framework for the provision of adequate strategies to optimize service provision and system resilience in CNIs. The goal of TOWER is being able to compute new network topologies for CNIs under the event of malicious attacks. For doing this, TOWER takes into account a risk analysis of the CNI, the results from a cyber-physical IDS and a multilayer model of the network, for taking into account all the existing dependences. TOWER analyses the network structure in order to determine the best strategy for obtaining a network topology, taking into account the existing dependences and the potential conflicting interests when not all requirements can be met. Finally, we present some lines for further development of TOWER.
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