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Torsional subsynchronous oscillations caused by grid-connected wind farms in a complex multi-machine power system under the condition of near strong modal resonance

机译:接近多模态共振的复杂多机电力系统中并网风电场引起的扭转次同步振荡

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Dynamic interactions introduced by grid-connected wind farms are multivariable. This is why wind farms' models need to be simplified when the impedance-model-based analysis is applied to examine whether negative resistance is supplied by the wind farms to cause subsynchronous oscillations (SSOs). In this paper, we examine and reveal the mechanism of torsional SSOs caused by grid-connected wind farms from the standpoint of near strong modal resonance (NESMOR). The examination and revelation consider fully the multivariable dynamic interactions introduced by wind farms in a complex multi-machine power system without simplifying the models of wind farms. We carry out the analysis based on the multi-input multi-output (MIMO) closed-loop model with two interconnected subsystems. The analysis indicates that the open-loop modal proximity (OLMP) of interconnected subsystems is a special case of NESMOR. When the NESMOR happens, growing torsional SSOs may be excited by the grid-connected wind farms. Hence, the analysis unveils the connection between the modal condition of OLMP and NESMOR, shedding a deeper insight into the mechanism of torsional SSOs caused by wind farms. In addition, we propose a method to detect the NESMOR. An example multi-machine power system with two grid-connected wind farms is presented to demonstrate the analysis and method.
机译:并网风电场引入的动态相互作用是多变量的。这就是为什么在应用基于阻抗模型的分析来检查风电场是否提供负电阻以引起次同步振荡(SSO)时,需要简化风电场模型的原因。本文从近强模态共振(NESMOR)的角度研究并揭示了并网风电场引起的扭转SSO的机制。检验和启示完全考虑了风电场在复杂的多机动力系统中引入的多变量动态相互作用,而没有简化风电场的模型。我们基于具有两个互连子系统的多输入多输出(MIMO)闭环模型进行分析。分析表明,互连子系统的开环模态接近度(OLMP)是NESMOR的特例。当NESMOR发生时,并网的风电场可能会激发不断增长的扭转SSO。因此,分析揭示了OLMP模态条件与NESMOR之间的联系,从而使人们对风电场引起的扭转SSO的机理有了更深入的了解。另外,我们提出了一种检测NESMOR的方法。给出了具有两个并网风电场的多机电力系统示例,以演示该分析和方法。

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