Defense strategies for asymmetric networked systems under composite utilities

N. Rao, Chris Y. T. Ma, K. Hausken, Fei He, David K. Y. Yau, J. Zhuang
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引用次数: 6

Abstract

We consider an infrastructure of networked systems with discrete components that can be reinforced at certain costs to guard against attacks. The communications network plays a critical, asymmetric role of providing the vital connectivity between the systems. We characterize the correlations within this infrastructure at two levels using (a) aggregate failure correlation function that specifies the infrastructure failure probability given the failure of an individual system or network, and (b) first-order differential conditions on system survival probabilities that characterize component-level correlations. We formulate an infrastructure survival game between an attacker and a provider, who attacks and reinforces individual components, respectively. They use the composite utility functions composed of a survival probability term and a cost term, and the previously studied sum-form and product-form utility functions are their special cases. At Nash Equilibrium, we derive expressions for individual system survival probabilities and the expected total number of operational components. We apply and discuss these estimates for a simplified model of distributed cloud computing infrastructure.
复合效用下非对称网络系统的防御策略
我们考虑一个具有离散组件的网络系统的基础设施,这些组件可以在一定的成本下加强以防止攻击。通信网络在提供系统之间的重要连接方面起着关键的非对称作用。我们在两个层面上使用(a)总体故障相关函数来描述该基础设施中的相关性,该函数指定给定单个系统或网络故障的基础设施故障概率,以及(b)表征组件级相关性的系统生存概率的一阶微分条件。我们在攻击者和提供者之间制定了一个基础设施生存游戏,他们分别攻击和强化单个组件。它们使用由生存概率项和成本项组成的复合效用函数,前面研究的和型和积型效用函数是它们的特例。在纳什均衡下,我们导出了单个系统生存概率和操作组件的期望总数的表达式。我们将这些估计应用于分布式云计算基础设施的简化模型并进行讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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