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Study on the Oscillation Center of DFIG-based Wind Farm Power System

机译:基于DFIG的风电场电力系统振荡中心研究

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Due to the characteristics of randomness, volatility and low inertia, the large-scale integration of new energy units has changed the original power flow distribution and deteriorated the transient stability of the system, resulting in the migration of the system oscillation center, which can even affect the accurate action of the splitting control. Aiming at the problem that the integration of doubly-fed induction generator (DFIG) affects the migration law of the oscillation center, firstly the Thevenin equivalent model of DFIG is constructed and the operating characteristics are analyzed. And then the equivalent admittance model of DFIG is constructed. Finally, based on the equivalent admittance model, the migration law of the oscillation center in the DFIG-based wind power system is analyzed. The results show that the out-of-step center (OOSC) moves away from the DFIG-based wind farm integration point when DFIG generates reactive power and moves close to the integration point when DFIG absorbs reactive power. While the migration range of the oscillation center extends to the entire line.
机译:由于随机性,波动性和低惯性的特点,新能量单位的大规模集成已经改变了原始电流分布并降低了系统的瞬态稳定性,导致系统振荡中心的迁移,甚至可以影响分裂控制的准确作用。针对双馈感应发电机(DFIG)的集成影响振荡中心的迁移规设的问题,首先构建了DFIG的等效模型,分析了操作特性。然后构建了DFIG的等效导纳模型。最后,基于等效导算模型,分析了基于DFIG的风电系统中振荡中心的迁移规律。结果表明,当DFIG吸收无功功率时,当DFIG产生无功功率并且接近集成点移动时,阶梯式远程(OOSC)远离基于DFIG的风电场集成点。虽然振荡中心的迁移范围延伸到整个线路。

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