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Communications, Information, and Cyber Security in Systems-of-Systems: Assessing the Impact of Attacks through Interdependency Analysis

机译:系统中的通信,信息和网络安全:通过相互依赖性分析评估攻击的影响

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The analysis of risks associated with communications, and information security for a system-of-systems is a challenging endeavor. This difficulty is due to the complex interdependencies that exist in the communication and operational dimensions of the system-of-systems network, where disruptions on nodes and links can give rise to cascading failure modes. In this paper, we propose the modification of a functional dependency analysis tool, as a means of analyzing system-of-system operational and communication architectures. The goal of this research is to quantify the impact of attacks on communications, and information flows on the operability of the component systems, and to evaluate and compare different architectures with respect to their reliability and robustness under attack. Based on the topology of the network, and on the properties of the dependencies, our method quantifies the operability of each system as a function of the availability and correctness of the required input, and of the operability of the other systems in the network. The model accounts for partial capabilities and partial degradation. Robustness of the system-of-systems is evaluated in terms of its capability to maintain an adequate level of operability following a disruption in communications. Hence, different architectures can be compared based on their sensitivity to attacks, and the method can be used to guide decision both in architecting the system-of-systems and in planning updates and modifications, accounting for the impact of interdependencies on the robustness of the system-of-systems. Synthetic examples show conceptual application of the method.
机译:分析与通信相关的风险以及系统对系统的信息安全是一项艰巨的任务。该困难是由于系统系统网络的通信和操作维度中存在复杂的相互依赖关系,其中节点和链接上的中断可能会导致级联故障模式。在本文中,我们提出了对功能依赖性分析工具的修改,以作为分析系统间的操作和通信体系结构的一种手段。这项研究的目的是量化攻击对通信,信息流对组件系统的可操作性的影响,并就攻击下的可靠性和鲁棒性评估和比较不同的体系结构。基于网络的拓扑结构以及依存关系的属性,我们的方法根据所需输入的可用性和正确性以及网络中其他系统的可操作性来量化每个系统的可操作性。该模型说明了部分功能和部分降级。根据通信中断后系统保持足够水平的可操作性的能力来评估系统的鲁棒性。因此,可以根据不同体系结构对攻击的敏感度进行比较,并且该方法可用于指导系统体系结构设计以及规划更新和修改的决策,并考虑到相互依存关系对系统健壮性的影响。系统的系统。综合实例说明了该方法的概念应用。

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