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Impacts of high penetration of DFIG wind turbines on rotor angle stability of power systems

机译:DFIG风力发电机的高穿透力对电力系统转子角稳定性的影响

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摘要

With the integration of wind power into power systems continues to increase, the impact of high penetration of wind power on power system stability becomes a very important issue. This paper investigates the impact of doubly fed induction generator (DFIG) control and operation on rotor angle stability. A control strategy for both the rotor-side converter (RSC) and grid-side converter (GSC) of the DFIG is proposed to mitigate DFIGs impacts on the system stability. DFIG-GSC is utilized to be controlled as static synchronous compensator (STATCOM) to provide reactive power support during grid faults. In addition, a Power System Stabilizer is implemented in the reactive power control loop of DFIG-RSC. The proposed approaches are validated on a realistic Western System Coordinating Council (WSCC) power system under both small and large disturbances. The simulation results show the effectiveness and robustness of both DFIG-GSC control strategy and power system stabilizer to enhance rotor angle stability of power system.
机译:随着风力发电在电力系统中的集成不断增加,风力发电的高普及度对电力系统稳定性的影响已成为一个非常重要的问题。本文研究了双馈感应发电机(DFIG)的控制和运行对转子角稳定性的影响。提出了针对DFIG的转子侧变流器(RSC)和电网侧变流器(GSC)的控制策略,以减轻DFIG对系统稳定性的影响。 DFIG-GSC被用作静态同步补偿器(STATCOM),以在电网故障期间提供无功功率支持。此外,在DFIG-RSC的无功功率控制回路中实现了电源系统稳定器。拟议的方法在大小扰动下均在现实的西方系统协调委员会(WSCC)的电力系统上得到了验证。仿真结果表明,DFIG-GSC控制策略和电力系统稳定器在提高电力系统转子角稳定性方面均具有有效性和鲁棒性。

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