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A P-Q Coordination Method for Wind Farm to Mitigate System Frequency Deviation During LVRT Period

机译:风电场的P-Q协调方法,减轻LVRT期间系统频率偏差

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This paper proposes an active and reactive power coordination control strategy for wind turbine generators (WTGs) to reduce frequency deviation during the low voltage ride through (LVRT) period, in which a stator active current injection optimization is developed that can consider the LVRT reactive current constraint and the maximum stator current constraint. In this control strategy, the wake effect and detailed wind farm model are taken into consideration. Compared with the conventional LVRT control strategy of individual doubly-fed induction generator (DFIG), the proposed strategy can adaptively provide the active and reactive reference current based on an offline look-up table method to minimize the lack of active power generation and achieve faster active power recovery during the LVRT period. Finally, a test system with 4 synchronous generators (SGs) and 12 DFIG based on DIgSILENT-MATLAB platform is used to verify the effectiveness of the proposed control.
机译:本文提出了一种用于风力涡轮发电机(WTG)的主动和无功功率协调控制策略,以降低低电压乘坐(LVRT)时段期间的频率偏差,其中开发了可以考虑LVRT无功电流的定子主动电流喷射优化 约束和最大定子电流约束。 在该控制策略中,考虑了唤醒效果和详细的风电场模型。 与各个双馈感应发生器(DFIG)的传统LVRT控制策略相比,所提出的策略可以自适应地提供基于离线查找表方法的主动和无功的参考电流,以最大限度地减少缺乏有效发电并更快地实现 LVRT期间的有效电力恢复。 最后,使用基于DigSilent-Matlab平台的4个同步发电机(SGS)和12 DFIG的测试系统用于验证所提出的控制的有效性。

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