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DC-Voltage Fluctuation Elimination Through a DC-Capacitor Current Control for DFIG Converters Under Unbalanced Grid Voltage Conditions

机译:在不平衡电网电压条件下通过DFIG转换器的直流电容器电流控制消除直流电压波动

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摘要

Unbalanced grid voltage causes a large second-order harmonic current in the dc-link capacitors as well as dc-voltage fluctuation, which potentially will degrade the lifespan and reliability of the capacitors in voltage source converters. This paper proposes a novel dc-capacitor current control method for a grid-side converter (GSC) to eliminate the negative impact of unbalanced grid voltage on the dc-capacitors. In this method, a dc-capacitor current control loop, where a negative-sequence resonant controller is used to increase the loop gain, is added to the conventional GSC current control loop. The rejection capability to the unbalanced grid voltage and the stability of the proposed control system are discussed. The second-order harmonic current in the dc capacitor as well as dc-voltage fluctuation is very well eliminated. Hence, the dc capacitors will be more reliable under unbalanced grid voltage conditions. A modular implementation method of the proposed control strategy is developed for the DFIG controller. Finally, experiments are presented to validate the theoretical analysis.
机译:电网电压的不平衡会在直流环节电容器中产生大量的二次谐波电流,并且会引起直流电压波动,这有可能会降低电压源转换器中电容器的寿命和可靠性。本文提出了一种用于电网侧变流器(GSC)的新型直流电容器电流控制方法,以消除电网电压不平衡对直流电容器的负面影响。在这种方法中,将直流电容器电流控制环路(其中使用负序谐振控制器来增加环路增益)添加到常规GSC电流控制环路中。讨论了不平衡电网电压的抑制能力和所提出的控制系统的稳定性。可以很好地消除直流电容器中的二次谐波电流以及直流电压波动。因此,在不平衡的电网电压条件下,直流电容器将更加可靠。针对DFIG控制器开发了所提出的控制策略的模块化实现方法。最后,提出了实验以验证理论分析。

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