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Control Inversion: A Clustering-Based Method for Distributed Wide-Area Control of Power Systems

机译:控制反转:一种基于聚类的电力系统分布式广域控制方法

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Wide-area control (WAC) has been shown to be an effective tool for damping low-frequency oscillations in power systems. In the current state of art, WAC is challenged by two main factors, namely, scalability of design and complexity of implementation. In this paper, we present a control design called control inversion that bypasses both of these challenges using the idea of clustering. The basic philosophy behind this method is to project the original power system model into a lower-dimensional state space through clustering and aggregation of generator states, and then designing a linear-quadratic regulator (LQR) controller for the lower-dimensional model. This controller is finally projected back to the original coordinates for wide-area implementation. The main problem is, therefore, posed as finding the projection which best matches the closed-loop performance of the WAC controller with that of a reference LQR controller for damping low-frequency oscillations. We verify the effectiveness of the proposed design using the IEEE 48-machine power system model of the Northeastern Power Coordinating Council.
机译:广域控制(WAC)已被证明是抑制电力系统中低频振荡的有效工具。在当前的技术水平下,WAC面临两个主要因素的挑战,即设计的可扩展性和实现的复杂性。在本文中,我们提出了一种称为控制反转的控制设计,该设计使用聚类的概念绕过了这两个挑战。该方法背后的基本原理是通过对发电机状态进行聚类和聚合将原始电力系统模型投影到低维状态空间,然后为该低维模型设计线性二次调节器(LQR)控制器。最后,将该控制器投影回原始坐标,以进行广域实施。因此,主要问题在于找到最能匹配WAC控制器和参考LQR控制器的闭环性能的投影,以衰减低频振荡。我们使用东北电力协调委员会的IEEE 48机电力系统模型验证了所提出设计的有效性。

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