识别关键网络物理地形

Brian Thompson, Richard E. Harang
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引用次数: 4

摘要

陆军战术网络的高机动性,加上它们与敌对行为者的近距离接触,增加了与短程网络攻击相关的风险。主动操作下这种短距离连接的连接模型是非常不稳定的,高度依赖于元素运行的物理空间,以及该空间内的运动模式。为了处理这些依赖关系,我们引入了“关键网络物理地形”的概念:在移动战术网络中,允许有效控制邻近依赖恶意软件传播的操作区域内的位置,即使该网络的元素以不可预测的节点到节点连接模式不断运动。我们提供了运动模型和近似策略的分析,以找到这些关键节点,并通过仿真证明,我们可以快速有效地识别这些关键的网络物理地形。
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Identifying Key Cyber-Physical Terrain
The high mobility of Army tactical networks, combined with their close proximity to hostile actors, elevates the risks associated with short-range network attacks. The connectivity model for such short range connections under active operations is extremely fluid, and highly dependent upon the physical space within which the element is operating, as well as the patterns of movement within that space. To handle these dependencies, we introduce the notion of "key cyber-physical terrain": locations within an area of operations that allow for effective control over the spread of proximity-dependent malware in a mobile tactical network, even as the elements of that network are in constant motion with an unpredictable pattern of node-to-node connectivity. We provide an analysis of movement models and approximation strategies for finding such critical nodes, and demonstrate via simulation that we can identify such key cyber-physical terrain quickly and effectively.
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