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Reduced Cost of Reactive Power in Doubly Fed Induction Generator Wind Turbine System With Optimized Grid Filter

机译:通过优化的电网滤波器降低双馈感应风力发电机系统的无功成本

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摘要

The modern grid requirement has caused that the wind power system behaves more like conventional rotating generators, and it is able to support certain amount of the reactive power. For a typical doubly fed induction generator (DFIG) wind turbine system, the reactive power can be supported either through the rotor-side converter or the grid-side converter. This paper first compares the current ripples and supportive reactive power ranges between the conventional and optimized filter, if the reactive power is injected from the grid-side converter. Then, the loss distribution is evaluated both for the generator and the wind power converter in terms of the reactive power done by the rotor-side converter or the grid-side converter with various grid filters. Afterward, the annual energy loss is also estimated based on yearly wind profile. Finally, experimental results of the loss distribution are performed in a down-scaled DFIG system. It is concluded that overexcited reactive power injected from the grid-side converter has lower energy loss per year compared to the overexcited reactive power covered by the rotor-side converter. Furthermore, it is also found that the annual energy loss could even become lower with the optimized filter and thereby more energy production for the wind turbine.
机译:现代电网要求导致风力发电系统的行为更像常规的旋转发电机,并且能够支持一定量的无功功率。对于典型的双馈感应发电机(DFIG)风力涡轮机系统,可通过转子侧变流器或电网侧变流器来支持无功功率。如果无功功率是从电网侧转换器注入的,则本文首先比较了传统滤波器和优化滤波器之间的电流纹波和支持的无功功率范围。然后,根据由转子侧变流器或具有各种电网滤波器的电网侧变流器完成的无功功率,对发电机和风力发电变流器的损耗分布进行评估。之后,还基于年度风廓线估算年度能量损失。最后,在缩小的DFIG系统中进行损耗分布的实验结果。可以得出的结论是,与转子侧变流器所覆盖的过激无功功率相比,从电网侧变流器注入的过激无功功率每年的能量损失更低。此外,还发现,通过优化的过滤器,年度能量损失甚至可以降低,从而为风力涡轮机提供更多的能量。

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