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Resilient Distributed Control of Multi-agent Cyber-Physical Systems

机译:多主体网络物理系统的弹性分布式控制

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Multi-agent cyber-physical systems (CPSs) are ubiquitous in modern infrastructure systems, including the future smart grid, transportation networks, and public health systems. Security of these systems are critical for normal operation of our society. In this paper, we focus on physical layer resilient control of these systems subject to cyber attacks and malicious behaviors of physical agents. We establish a cross-layer system model for the investigation of cross-layer coupling and performance interdependencies for CPSs. In addition, we study a two-system synchronization problem in which one is a malicious agent who intends to mislead the entire system behavior through physical layer interactions. Feedback Nash equilibrium is used as the solution concept for the distributed control in the multi-agent system environment. We corroborate our results with numerical examples, which show the performance interdependencies between two CPSs through cyber and physical interactions.
机译:多主体网络物理系统(CPS)在现代基础设施系统中无处不在,包括未来的智能电网,交通网络和公共卫生系统。这些系统的安全性对于我们社会的正常运转至关重要。在本文中,我们专注于这些系统在受到网络攻击和物理代理的恶意行为的情况下的物理层弹性控制。我们建立了一个跨层系统模型,用于研究CPS的跨层耦合和性能相互依赖性。此外,我们研究了两个系统的同步问题,其中一个是恶意代理,该代理意图通过物理层交互来误导整个系统的行为。反馈纳什均衡被用作多主体系统环境中分布式控制的解决方案概念。我们用数值示例来证实我们的结果,这些数值示例通过网络和物理交互显示了两个CPS之间的性能相互依赖性。

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