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An aggregation method of wind farms model for studying power system low frequency power oscillation

机译:研究电力系统低频功率振荡的风电场模型聚合方法

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摘要

An aggregation method to build the model of grid-connected wind farms consisting of double-fed induction generators (DFIGs) for studying power system low frequency power oscillation is presented. Firstly in this paper, the accurate dynamic model of a wind farm expressed in the form of transfer functions is derived based on the dynamic model of single DFIGURE Secondly, an estimation of impact of grid-connected wind farm on power system small-signal angular stability is established. The established estimation indicates the aggregation principle of dynamic model of wind farm for studying of power system low frequency power oscillations. The aggregation should ensure that the frequency response of aggregated model ought to be approximately equal to that of accurate dynamic model at the electromechanical oscillation frequencies of concerns. The dynamic model of a DFIG can be used as the aggregated dynamic model of wind farm by use of numerical fitting method based on the aggregation principle, which can reduce the calculation complexity in the power system small signal stability analysis. In the paper, an example 16-machine 68-bus power system with a grid-connected wind farm is presented.
机译:提出了一种聚合方法,用于建立由双馈感应发电机(DFIG)组成的并网风电场模型,以研究电力系统的低频功率振荡。首先,基于单个DFIGURE的动力学模型,导出了以传递函数形式表示的风电场的精确动态模型。其次,估算了并网风电场对电力系统小信号角稳定性的影响。成立。建立的估计值表明了用于研究电力系统低频功率振荡的风电场动态模型的聚合原理。聚集应确保在所关注的机电振荡频率下,聚集模型的频率响应应近似等于精确动态模型的频率响应。通过基于聚集原理的数值拟合方法,DFIG的动态模型可以用作风电场的聚集动态模型,可以降低电力系统小信号稳定性分析的计算复杂度。在本文中,提出了一个示例的16机68总线电力系统,该系统具有并网的风电场。

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