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A secured distributed control system for future interconnected smart grids

机译:适用于未来互连智能电网的安全分布式控制系统

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摘要

The reliable performance of the smart grid is a function of the configuration and cyber-physical nature of its constituting systems. Recent public reports showed that there is an increasing rate of attacks on the power systems and that the savvy attackers are now capable of obscuring themselves from conventional intrusion detection systems, bringing about serious threats. Therefore, this work proposes a secured distributed control framework for future smart grids. The work presents a distributed control framework that is secured by means of signal processing tools and consensus protocol. The work models the physical and cyber systems, showing the effect of the different types of cyber-attacks and their mitigation. The proposed framework is based on the use of graph theory and consensus protocol to achieve a global control objective among the different agents in the system. Also, the proposed algorithm is equipped with the mathematical morphology algorithm as a distributed security observer that can analyze the system behavior, and detect and mitigate malicious actions. The proposed cyber-physical system and algorithm are modeled and implemented through MATLAB/Simulink. The results showed the ability of the proposed algorithm in achieving the global power objective and voltage profiles while mitigating a different kind of attack.
机译:智能电网的可靠性能取决于其组成系统的配置和网络物理性质。最近的公开报告显示,对电力系统的攻击率正在上升,并且精明的攻击者现在能够使自己免受常规入侵检测系统的攻击,从而带来了严重的威胁。因此,这项工作为未来的智能电网提出了一种安全的分布式控制框架。该工作提出了一个分布式控制框架,该框架通过信号处理工具和共识协议来保护。该工作为物理和网络系统建模,显示了不同类型的网络攻击及其缓解的效果。所提出的框架基于图论和共识协议的使用,以实现系统中不同代理之间的全局控制目标。此外,所提出的算法配备有作为分布式安全性观察者的数学形态学算法,可以分析系统行为并检测和缓解恶意行为。通过MATLAB / Simulink对提出的网络物理系统和算法进行建模和实现。结果表明,所提出的算法能够在减轻另一类攻击的同时实现全局功率目标和电压曲线。

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