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The influence of the applied rotor voltage on ride-through capability of doubly fed induction generator

机译:施加的转子电压对双馈感应发电机穿越能力的影响

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This paper presents a discussion about the large disturbance instability phenomenon of grid-connected doubly fed induction generators. The behavior of squirrel cage induction generator (SCIG) on large disturbance stability depends basically on the ability of the blade pitch angle control and the injection of reactive power during contingency on the network. However, the behavior of the doubly fed induction generator (DFIG) is also affected by the applied rotor voltage. The instability behavior of the SCIG is well documented in the literature, on the other hand this behavior is not well described for the case of DFIG. The analyses performed in this paper evaluate the effect of different rotor voltage applied during grid fault on the DFIG stability. A sensitive study using dynamics simulations was performed to determine the critical fault tolerance time. The results have shown that when enlarging the direct axis voltage the DFIG has better stability performance.
机译:本文对并网双馈感应发电机的大扰动不稳定性现象进行了讨论。鼠笼式感应发电机(SCIG)在大扰动稳定性上的行为基本上取决于叶片变桨角控制的能力以及在应急情况下网络上无功功率的注入。但是,双馈感应发电机(DFIG)的行为也受到施加的转子电压的影响。 SCIG的不稳定性行为已在文献中得到了充分的记录,另一方面,对于DFIG的情况,这种行为没有得到很好的描述。本文进行的分析评估了电网故障期间施加的不同转子电压对DFIG稳定性的影响。使用动力学仿真进行了敏感的研究,以确定关键的容错时间。结果表明,当增大直流电压时,DFIG具有更好的稳定性能。

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