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A DoS-resilient Set-Theoretic Controller for Smart Grid Applications

机译:用于智能电网应用的DOS弹性设定控制器

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In this paper, we address the problem of designing a Denial of Service (DoS)-resilient controller for robustly recovering transient stability in smart grids. In particular, we consider a scenario where, during the recovery phase, a finite-time DoS attack affects the measurement channel. We propose a Model Predictive Control (MPC) controller based on the set-theoretic arguments, which is capable of dealing with both model uncertainties, actuator limitations and DoS. Unlike traditional robust MPC solutions, the proposed controller is particularly appealing for smart grid applications given its intrinsic capability of moving most of the required computations into an offline phase. The online phase requires the solution of a quadratic programming problem, which can be efficiently solved in real-time. Moreover, the proposed controller ensures a worst-case time to recovery irrespective of any admissible perturbation and DoS realization. Finally, by considering the New England 10-generator 39-bus system, simulation results are presented to show the advantage of the proposed solution when contrasted with another recently proposed scheme.
机译:在本文中,我们解决了设计拒绝服务(DOS)-Resilient控制器的问题,以便在智能网格中稳健地恢复瞬态稳定性。特别是,我们考虑在恢复阶段期间的场景,其中有限时间DOS攻击影响测量信道。我们提出了一种基于设定的理论参数的模型预测控制(MPC)控制器,其能够处理模型不确定性,执行器限制和DOS。与传统的强大MPC解决方案不同,所提出的控制器特别吸引智能电网应用,因为其在离线阶段移动大部分所需计算的内在能力。在线阶段要求解决二次编程问题,这可以实时有效地解决。此外,所提出的控制器可确保恢复最坏情况的时间,而不管任何可接受的扰动和DOS实现如何。最后,通过考虑新英格兰10发电机39总线系统,提出了模拟结果,以显示与其他最近提出的方案对比时提出的解决方案的优势。

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