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Investigation on the Faulty State of DFIG in a Microgrid

机译:微电网中DFIG的故障状态研究

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Different faulty states of a doubly fed induction generator (DFIG) connected to a microgrid are investigated in this paper. First, the simulation model consisting of two DFIGs connected to IEEE 34-bus test feeder for two vector control based was set up to investigate the transient performance of the microgrid. Then, different types of faults of the DFIGs, including partial loss of excitation (PLOE), complete loss of excitation (CLOE), and interturn short circuit (ISC) were analyzed through the simulation model using vector control strategy. The experimental results indicate that the active power will increase during the PLOE, and the average increase of the amplitude is about 26%, which will decrease the electromagnetic torque by 8% and increase the voltage at the neighbor node, the stability of the microgrid will be broken eventually. For the CLOE, the active power decreases about 80%, and node voltage decreases by 9.4% due to the inverse absorption of the reactive power. When the ISC occurs, the average node voltage and the active power decrease together. Finally, the suggestion for the detection of the DFIG faults is presented, which could be helpful to protect the DFIG from fault accident.
机译:本文研究了连接到微电网的双馈感应发电机(DFIG)的不同故障状态。首先,建立了由两个连接到IEEE 34总线测试馈线的两个DFIG组成的仿真模型,用于两个矢量控制,以研究微电网的瞬态性能。然后,通过使用矢量控制策略的仿真模型,分析了DFIG的不同类型的故障,包括部分励磁损耗(PLOE),完全励磁损耗(CLOE)和匝间短路(ISC)。实验结果表明,在PLOE期间有功功率将增加,幅度的平均增加约为26%,这将使电磁转矩降低8%,并增加相邻节点的电压,从而使微电网的稳定性提高。最终被打破。对于CLOE,由于无功功率的反向吸收,有功功率降低了约80%,节点电压降低了9.4%。当发生ISC时,平均节点电压和有功功率会同时下降。最后,提出了检测DFIG故障的建议,有助于保护DFIG免受故障事故的影响。

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