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A Cyber-Enabled Stabilizing Control Scheme for Resilient Smart Grid Systems

机译:弹性智能电网系统的基于网络的稳定控制方案

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摘要

A parametric controller is proposed for transient stability of synchronous generators after the occurrence of a disturbance in the power grid. The proposed controller based on feedback linearization control theory relies on receiving timely phasor measurement unit (PMU) information from selected parts of the power grid to employ fast acting flywheels that are situated near synchronous generators. The local storage devices aim to balance a swing equation model of the synchronous generator to drive the associated rotor speed to stability. The advantages of the proposed controller include that it is tunable and integrates well with existing governor controls in contrast to other forms of PMU-based control. Further, a comparison is drawn between the proposed controller and recently proposed nonlinear controllers for transient stabilization. Numerical results show the effectiveness and robustness of the proposed controller when applied to the 39-bus 10-generator New England power system.
机译:提出了一种参数控制器,用于同步发电机在电网中出现干扰后的瞬态稳定性。所提出的基于反馈线性化控制理论的控制器依赖于从电网的选定部分接收及时的相量测量单元(PMU)信息,以采用位于同步发电机附近的快速作用飞轮。本地存储设备旨在平衡同步发电机的摆动方程模型,以将相关的转子速度驱动到稳定状态。与其他形式的基于PMU的控制相比,所提出的控制器的优点在于它是可调的,并且可以与现有的调速器控制很好地集成在一起。此外,在所提出的控制器和最近提出的用于暂态稳定的非线性控制器之间进行了比较。数值结果表明,该控制器应用于39辆10发电机的New England电力系统时,其有效性和鲁棒性。

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