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A resilient control strategy for cyber-physical systems subject to denial of service attacks: A leader-follower set-theoretic approach

机译:对服务攻击拒绝的网络 - 物理系统的弹性控制策略:领导者 - 追随者集理方法

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摘要

Multi-agent systems are usually equipped with open communication infrastructures to improve interactions efficiency, reliability and sustainability. Although technologically cost-effective, this makes them vulnerable to cyber-attacks with potentially catastrophic consequences. To this end, we present a novel control architecture capable to deal with the distributed constrained regulation problem in the presence of time-delay attacks on the agents' communication infrastructure. The basic idea consists of orchestrating the interconnected cyber-physical system as a leader-follower configuration so that adequate control actions are computed to isolate the attacked unit before it compromises the system operations. Simulations on a multi-area power system confirm that the proposed control scheme can reconfigure the leader-follower structure in response to denial of service (DoS) attacks.
机译:多种代理系统通常配备开放的通信基础架构,以提高相互作用,可靠性和可持续性。虽然技术上具有成本效益,但这使得它们容易受到网络攻击的影响,具有潜在的灾难性后果。为此,我们提出了一种新颖的控制架构,能够在存在对代理通信基础设施的时延攻击的存在下处理分布式约束的调节问题。基本思想包括将互连的网络物理系统协调为领导者跟随器配置,以便计算足够的控制操作以在损害系统操作之前隔离攻击单元。在多区域电力系统上模拟确认所提出的控制方案可以响应于拒绝服务(DOS)攻击来重新配置领导者 - 跟随器结构。

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