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Reactive power control strategy of DFIG wind farms for regulating voltage of power grid

机译:DFIG风电场的无功功率控制策略用于调节电网电压

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If a wind farm is weakly connected to a power grid, then the voltage of the connection point fluctuates frequently due to the changeable wind speed. The active and reactive power of a doubly-fed induction generator (DFIG) can be decoupling controlled and the grid-side converter (GSC) of a DFIG can also generate some reactive power by adjusting the power factor, thus a DFIG can be considered as a reactive power resource to stabilize the voltage of the connection bus. Based on the power relationship of a DFIG, the up and down reactive power limitations of DFIG stator and GSC are analyzed. Then a reactive power control strategy of a DFIG wind farm is proposed, in which, a certain number of DFIGs are selected to support reactive power to the power grid when the voltage of the connection point drops. The control strategy aims at bringing the reactive power capability of DFIG into play and cutting down the investments in the reactive power compensation devices which are used less. The simulation model of a grid-connected DFIG wind farm is developed on the PSCAD/EMTDC platform, and the simulation results demonstrate the effectiveness of the control strategy proposed.
机译:如果风电场与电网的连接较弱,则连接点的电压会由于风速变化而频繁波动。双馈感应发电机(DFIG)的有功功率和无功功率可以解耦控制,并且DFIG的电网侧转换器(GSC)也可以通过调整功率因数来产生一些无功功率,因此DFIG可以认为是一种无功功率资源,用于稳定连接总线的电压。基于DFIG的功率关系,分析了DFIG定子和GSC的上下无功功率限制。然后提出了双馈风力发电场的无功控制策略,其中当连接点的电压下降时,选择一定数量的双馈风力发电场来支持电网无功功率。该控制策略旨在发挥DFIG的无功功率能力,并减少对使用较少的无功功率补偿设备的投资。在PSCAD / EMTDC平台上建立了并网双馈风电场的仿真模型,仿真结果证明了所提出控制策略的有效性。

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