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Control Signal Selection for Damping Oscillations With Wind Power Plants Based on Fundamental Limitations

机译:基于基本限制的风电厂阻尼振荡控制信号选择

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Transmission system operators are increasingly demanding that wind power plants (WPPs) contribute to enhance stability of power systems. When WPPs act as power system stabilizers (PSSs), the control and measured signals used to damp the oscillations may be located far away from the point where the oscillations are originated, typically at the synchronous generators. The use of only local measurements would imply a more robust system not requiring fast communication systems. The output signal used by the PSS in a WPP can be active or reactive power. The optimal combination of input and output to improve the system performance requires a detailed analysis. In this paper, a novel criterion to select input-output signals used by a PSS based on WPPs is presented. Unlike previous results, the proposed criterion considers explicitly local and remote signals in the analysis. Using fundamental design limitations and controllability and observability concepts, the criterion is able to identify the most adequate pair of input-output local signals without designing the controller. The application of the proposed selection criterion is illustrated in a three-synchronous-machine system with a WPP connected.
机译:输电系统运营商日益要求风力发电厂(WPP)有助于提高电力系统的稳定性。当WPP充当电力系统稳定器(PSS)时,用于衰减振荡的控制信号和测量信号的位置可能远离产生振荡的点,通常在同步发电机处。仅使用本地测量将意味着不需要快速通信系统的更健壮的系统。 WPP中PSS使用的输出信号可以是有功功率或无功功率。输入和输出的最佳组合以改善系统性能需要进行详细分析。本文提出了一种基于WPP的PSS选择输入输出信号的新准则。与以前的结果不同,建议的标准在分析中明确考虑了本地和远程信号。使用基本的设计限制以及可控性和可观察性概念,该标准无需设计控制器即可识别最合适的一对输入输出本地信号。在连接了WPP的三同步机系统中说明了建议的选择标准的应用。

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