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Optimal Allocation of Interconnecting Links in Cyber-Physical Systems: Interdependence, Cascading Failures, and Robustness

机译:网络物理系统中互连链路的最佳分配:相互依赖,级联故障和鲁棒性

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We consider a cyber-physical system consisting of two interacting networks, i.e., a cyber network overlaying a physical network. It is envisioned that these systems are more vulnerable to attacks since node failures in one network may result in (due to the interdependence) failures in the other network, causing a cascade of failures that would potentially lead to the collapse of the entire infrastructure. The robustness of interdependent systems against this sort of catastrophic failure hinges heavily on the allocation of the (interconnecting) links that connect nodes in one network to nodes in the other network. In this paper, we characterize the optimum inter-link allocation strategy against random attacks in the case where the topology of each individual network is unknown. In particular, we analyze the “regular” allocation strategy that allots exactly the same number of bidirectional internetwork links to all nodes in the system. We show, both analytically and experimentally, that this strategy yields better performance (from a network resilience perspective) compared to all possible strategies, including strategies using random allocation, unidirectional interlinks, etc.
机译:我们考虑由两个相互作用的网络组成的电子物理系统,即覆盖物理网络的电子网络。可以预见,这些系统更容易受到攻击,因为一个网络中的节点故障可能会导致(由于相互依赖)另一个网络中的故障,从而导致一连串的故障,有可能导致整个基础架构崩溃。相互依赖的系统对这种灾难性故障的鲁棒性在很大程度上取决于将一个网络中的节点连接到另一网络中的节点的(互连)链路的分配。在本文中,我们描述了在每个单独网络的拓扑未知的情况下针对随机攻击的最佳互连链路分配策略。特别是,我们分析了“常规”分配策略,该策略将完全相同数量的双向网络链接分配给系统中的所有节点。从分析和实验上我们都表明,与所有可能的策略(包括使用随机分配,单向互连等的策略)相比,该策略(从网络弹性的角度来看)产生更好的性能。

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