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Effect of AC voltage control on the stability of weak AC grid connected DFIG system

机译:交流电压控制对弱电并网双馈系统稳定性的影响

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Dynamic performance of grid connected doubly-fed induction generator (DFIG) in electromagnetic timescale is not merely determined by the operating point, but also largely dependent on its converter control. DFIG may suffer stability issues when integrated into a weak AC grid, in which converter control loops are coupled, and resulted impact for system stability is obscure. This paper proposed a simplified analytical model allowing for the possible interactions of control loops. The proposed model highlights the effect of AC voltage control gain. Based on the model, incorporating AC voltage control tuning and operating point variations, different potential instability phenomena and corresponding approximate operating margin are investigated. Detailed time domain simulations are employed to validate the proposed model and analysis results.
机译:电磁时间形象中网格连接的双馈电流发电机(DFIG)的动态性能不仅由操作点确定,而且在很大程度上取决于其转换器控制。 DFIG在集成到弱AC网格中时,DFIG可能会遭受稳定性问题,其中转换器控制环耦合,并导致系统稳定性的影响是模糊的。本文提出了一种简化的分析模型,允许控制环的可能相互作用。所提出的模型突出了交流电压控制增益的影响。基于该模型,研究了AC电压控制调谐和操作点变化,研究了不同的潜在稳定性现象和相应的近似操作边际。使用详细的时域模拟来验证所提出的模型和分析结果。

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