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The control strategy for grid-side converter of DFIG under asymmetrical voltage swell

机译:非对称电压骤升下双馈双馈电网侧变频器的控制策略

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This paper aims to study the control strategy of grid side converter (GSC) of DFIG under asymmetrical voltage swell. Asymmetrical high voltage swell may cause significant fluctuations across the DC voltage and energy reflux of the GSC, even results in the runaway of the GSC. Firstly, the mathematical model of GSC is established. Afterwards, negative sequence current is derived on the suppression of the double fluctuations in DC voltage. On the above basis, the controllability of GSC is analyzed. When the grid voltage asymmetry swells to a certain extent, in order to make the GSC return to controllable range, the modulation index closed loop control strategy is used to compensate inductive reactive power. The effectiveness of proposed control strategy for GSC during grid voltage asymmetrical swell is validated by the simulated results.
机译:本文旨在研究双馈双馈电网的电网侧变流器(GSC)在非对称电压骤升下的控制策略。不对称的高压骤升可能会导致直流电压发生较大的波动,并导致GSC的能量回流,甚至导致GSC失控。首先,建立了GSC的数学模型。此后,在抑制直流电压的双重波动时会产生负序电流。在此基础上,对GSC的可控性进行了分析。当电网电压不对称性膨胀到一定程度时,为了使GSC返回可控范围,采用调制指数闭环控制策略来补偿感性无功功率。仿真结果验证了所提出的GSC控制策略在电网电压非对称膨胀过程中的有效性。

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