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Interarea Oscillation Damping Controls for Wind Power Plants

机译:风力发电厂区域间振荡阻尼控制

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This paper investigates the potential for wind power plants (WPPs) to damp interarea modes. Interarea modes may be the result of a single or a group of generators oscillating against another group of generators across a weak transmission link. If poorly damped, these power system oscillations can cause system instability and potentially lead to blackouts. Power conversion devices, particularly, megawatt-scale converters that connect wind turbines and photovoltaic power plants to the grid, could be used to damp these oscillations by injecting power into the system out of phase with the potentially unstable mode. In our model, this power may be provided by a WPP. Over time, the net energy injection is near zero; therefore, providing this static damping capability is not expected to affect the energy production of a WPP. This is a measurement-based investigation that employs simulated measurement data. It is not a traditional small-signal stability analysis based on Eigenvalues and knowledge of the power system network and its components. Kundurs well-known two-area, four-generator system and a doubly fed induction generator (DFIG)-based WPP are modeled in PSCAD/EMTDC. The WPP model is based on the Western Electricity Coordination Council (WECC) standard model. A controller to damp interarea oscillations is added to the WECC DFIG model, and its effects are studied. Analysis is performed on the data generated by the simulations. The sampling frequency is set to resemble the sampling frequency at which data are available from phasor measurement units in the real world. The YuleWalker algorithm is used to estimate the power spectral density of these signals.
机译:本文研究了风力发电厂(WPP)抑制区域间模式的潜力。区域间模式可能是单个或一组发电机在较弱的传输链路上与另一组发电机发生振荡的结果。如果阻尼不佳,这些电源系统的振荡会导致系统不稳定,并可能导致断电。功率转换设备,特别是将风力涡轮机和光伏电站连接到电网的兆瓦级转换器,可以通过向潜在不稳定模式的系统中异相注入功率来抑制这些振荡。在我们的模型中,此功能可能由WPP提供。随着时间的流逝,净能量注入将接近零。因此,提供这种静态阻尼功能不会影响WPP的能源生产。这是基于测量的调查,它使用模拟的测量数据。它不是基于特征值和电力系统网络及其组成部分知识的传统小信号稳定性分析。在PSCAD / EMTDC中对Kundurs著名的两区四发电机系统和基于双馈感应发电机(DFIG)的WPP进行了建模。 WPP模型基于西方电力协调委员会(WECC)标准模型。将阻尼区域间振荡的控制器添加到WECC DFIG模型,并研究其影响。对模拟生成的数据进行分析。采样频率设置为类似于现实世界中相量测量单元可获得数据的采样频率。 YuleWalker算法用于估计这些信号的功率谱密度。

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