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Adaptive Q–V Scheme for the Voltage Control of a DFIG-Based Wind Power Plant

机译:基于双馈风力发电机组的电压控制的自适应 Q–V 方案

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Wind generators within a wind power plant (WPP) will produce different amounts of active power because of the wake effect, and therefore, they have different reactive power capabilities. This paper proposes an adaptive reactive power to the voltage () scheme for the voltage control of a doubly fed induction generator (DFIG)-based WPP. In the proposed scheme, the WPP controller uses a voltage control mode and sends a voltage error signal to each DFIG. The DFIG controller also employs a voltage control mode utilizing the adaptive characteristics depending on the reactive power capability such that a DFIG with a larger reactive power capability will inject more reactive power to ensure fast voltage recovery. Test results indicate that the proposed scheme can recover the voltage within a short time, even for a grid fault with a small short-circuit ratio, by making use of the available reactive power of a WPP and differentiating the reactive power injection in proportion to the reactive power capability. This will, therefore, help to reduce the additional reactive power and ensure fast voltage recovery.
机译:由于尾流效应,风力发电厂(WPP)中的风力发电机将产生不同数量的有功功率,因此它们具有不同的无功功率能力。本文提出了一种针对电压()方案的自适应无功功率,用于基于双馈感应发电机(DFIG)的WPP的电压控制。在提出的方案中,WPP控制器使用电压控制模式,并将电压误差信号发送到每个DFIG。 DFIG控制器还根据无功功率能力采用利用自适应特性的电压控制模式,因此具有较大无功功率能力的DFIG将注入更多无功功率以确保快速恢复电压。测试结果表明,通过利用WPP的可用无功功率并按与输入功率成比例的比例来区分无功功率注入,即使对于短路比较小的电网故障,该方案也可以在短时间内恢复电压。无功功率能力。因此,这将有助于减少额外的无功功率并确保快速恢复电压。

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