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Robust structural analysis and design of distributed control systems to prevent zero dynamics attacks

机译:分布式控制系统的稳健结构分析和设计,可防止零动态攻击

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We consider the design and analysis of robust distributed control systems (DCSs) to ensure the detection of integrity attacks. DCSs are often managed by independent agents and are implemented using a diverse set of sensors and controllers. However, the heterogeneous nature of DCSs along with their scale leave such systems vulnerable to adversarial behavior. To mitigate this reality, we provide tools that allow operators to prevent zero dynamics attacks when as many as p agents and sensors are corrupted. Such a design ensures attack detectability in deterministic systems while removing the threat of a class of stealthy attacks in stochastic systems. To achieve this goal, we use graph theory to obtain necessary and sufficient conditions for the presence of zero dynamics attacks in terms of the structural interactions between agents and sensors. We then formulate and solve optimization problems which minimize communication networks while also ensuring a resource limited adversary cannot perform a zero dynamics attacks. Polynomial time algorithms for design and analysis are provided.
机译:我们考虑设计和分析健壮的分布式控制系统(DCS),以确保检测到完整性攻击。 DCS通常由独立的代理进行管理,并使用各种传感器和控制器来实现。但是,DCS的异质性及其规模使此类系统容易受到对抗行为的攻击。为了缓解这一现实,我们提供了一些工具,允许操作员在多达p个代理和传感器损坏时防止零动态攻击。这样的设计确保了确定性系统中的攻击可检测性,同时消除了随机系统中一类隐形攻击的威胁。为了实现此目标,我们使用图论来根据代理与传感器之间的结构相互作用获得零动力学攻击存在的必要条件和充分条件。然后,我们制定并解决优化问题,以最大程度地减少通信网络,同时确保资源有限的对手无法执行零动态攻击。提供了用于设计和分析的多项式时间算法。

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