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A switchable cascaded multi-dc-branch for permanent magnet synchronous generator in wide speed range on wind energy conversion system

机译:风能转换系统中宽速范围内永磁同步发电机的可切换级联多直流分支

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Traditional power converters for direct-drive permanent magnet wind power system limit the speed range of the permanent magnet generator, which affect the efficiency of wind energy utilization. Therefore the variable multi-dc-branch topology for wide-speed-operation direct-drive permanent magnet synchronous is proposed. This variable topology can not only extend the generator speed by adjusting the series dc branch number with the speed change in a finite bus voltage domain, but also reduce the running parallel branch with the reduced wind speed which can increase the branch fault tolerance. The variable multi-dc-branch topology is analyzed in this paper and the method of extending the generator speed with this topology is studied. The simulation and experimental results show that the variable multi-dc-branch topology is feasibility and using this topology to extend the generator speed is availability.
机译:用于直接驱动永磁风力发电系统的传统功率转换器限制了永磁发电机的速度范围,这影响了风能利用的效率。因此,提出了用于宽速运行直接驱动永磁同步的可变多直流分支拓扑。这种可变的拓扑结构不仅可以通过在有限母线电压域内随着速度的变化来调整串联直流支路的数量来扩展发电机的速度,而且可以通过降低风速来减少并联并联支路的运行,从而提高支路的容错能力。本文分析了可变的多直流分支拓扑,并研究了用这种拓扑扩展发电机速度的方法。仿真和实验结果表明,可变的多直流分支拓扑是可行的,并且使用该拓扑来扩展发电机速度是可行的。

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