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Fault Recovery of a Wind farm with Fixed Speed Induction Generators using a STATCOM

机译:使用STATCOM的具有固定速度感应发电机的风电场的故障恢复

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This paper describes a feasibility study for a wind farm with Fixed Speed Induction Generators and having a STATCOM, combined with Mechanically Switched Capacitors, for reactive power control and fault recovery. The turbine blade and generator inertia, coupled with a shaft of finite stiffness, are modelled to represent torsional oscillation. This is important to represent the dynamic behaviour of the system adequately. Dynamic simulations show that fault ride-though capability of a wind farm can be met by using a STATCOM, and switching in shunt capacitors, when the overspeed protection is set at 1.1 pu. However, the wind turbine must be designed to cope with the mechanical stress resulting from a fault in the AC system with a large magnitude of voltage dip. Successful fault recovery is demonstrated for symmetrical and asymmetrical faults. The control strategy proposed here can be adopted for different grid code requirements and various wind farms.
机译:本文描述了一个风电场的可行性研究,该风电场使用定速感应​​发电机,STATCOM和机械开关电容器相结合,用于无功功率控制和故障恢复。涡轮叶片和发电机的惯性,再加上有限刚度的轴,被建模为代表扭转振动。这对于充分表示系统的动态行为很重要。动态仿真表明,当超速保护设置为1.1 pu时,通过使用STATCOM并接通并联电容器可以满足风电场的故障穿越能力。然而,风力涡轮机必须被设计为应对由于交流系统的故障而导致的机械应力,并且电压骤降的幅度很大。对称故障和非对称故障的成功故障恢复均得到证明。此处提出的控制策略可用于不同的电网法规要求和各种风电场。

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