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首页> 外文期刊>International journal of electrical power and energy systems >Investigation of subsynchronous control interaction in DFIG-based wind farms connected to a series compensated transmission line
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Investigation of subsynchronous control interaction in DFIG-based wind farms connected to a series compensated transmission line

机译:基于DFIG的风电场与串联补偿输电线路相连的次同步控制相互作用的研究

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The aim of this paper is to investigate the risk for subsynchronous control interaction (SSCI) in doubly-fed induction generator (DFIG) based wind farms connected to series-compensated transmission lines. For this purpose, a detailed analytical model of the frequency-dependent input admittance of the DFIG is derived. The developed admittance model is then used to get insights on the frequency characteristic of the DFIG wind turbine generator unit. In particular, the power-dissipation properties of the DFIG are used to identify those control parameters and operating condition that mainly impact the behaviour of the wind turbine in the subsynchronous frequency range. The admittance model of the wind farm together with the impedance model of the series compensated transmission line are used to identify the risk for SSCI. Through the use of the Generalized Nyquist Criterion, it is shown that the closed-loop bandwidth of the current controller that regulates the rotor current has a major detrimental impact on the stability of the system. Furthermore, results show that the active power set point and the level of series compensation also play an important role on the overall system's stability. Time domain simulations are conducted to validate the theoretical findings.
机译:本文的目的是研究与串联补偿传输线相连的基于双馈感应发电机(DFIG)的风电场中次同步控制相互作用(SSCI)的风险。为此,导出了DFIG的频率相关输入导纳的详细分析模型。然后,使用开发的导纳模型来了解DFIG风力发电机组的频率特性。特别地,DFIG的功率耗散特性用于识别那些主要影响风力涡轮机在次同步频率范围内行为的控制参数和运行条件。风电场的导纳模型与串联补偿传输线的阻抗模型一起用于识别SSCI的风险。通过使用广义奈奎斯特准则,可以看出,调节转子电流的电流控制器的闭环带宽对系统的稳定性有重大不利影响。此外,结果表明,有功功率设定点和串联补偿水平也对整个系统的稳定性起着重要作用。进行时域仿真以验证理论发现。

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