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Control Strategy Study of DFIG with LVRT

机译:LVRT的DFIG控制策略研究

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In recent years, the proportion of the wind power in the grid is increasing rapidly. When the grids faults results in voltage decline, the widespread tripping of wind generators could lead to transient instabilities and local or overall blackouts. So it is concerned that the wind turbines merge into the grid and the request of the low voltage ride through(LVRT)ability is proposed. This paper analysises the transient responses of DFIG during grid fault, and then the three LVRT methods of DFIG are presented, Excitation Control strategy is mainly discussed. The model and the strategy of Excitation Control are implemented in the power system simulation tool Matlab/Simulink. The control algorithm was implemented in the existing motor control unit without any additional hardware cost. The controller was successfully tested in a test. The effect is good.
机译:近年来,风电在电网中的比重正在迅速增加。当电网故障导致电压下降时,风力发电机的大范围跳闸可能会导致瞬态不稳定以及局部或整体停电。因此,人们担心风力涡轮机会并入电网,并提出了对低压穿越能力的要求。本文分析了电网故障时DFIG的暂态响应,提出了DFIG的三种LVRT方法,主要讨论了励磁控制策略。励磁控制的模型和策略在电力系统仿真工具Matlab / Simulink中实现。该控制算法是在现有的电机控制单元中实现的,而无需任何额外的硬件成本。控制器已在测试中成功测试。效果不错。

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