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Power electronics converters for wind turbine systems

机译:风力涡轮机系统的电力电子转换器

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The steady growth of installed wind power which reached 200 GW capacity in 2010, together with the up-scaling of the single wind turbine power capability - 7 MW's has been announced by manufacturers - has pushed the research and development of power converters towards full scale power conversion, lowered cost pr kW, and increased power density and the need for higher reliability. Substantial efforts are made to comply with the more stringent grid codes, especially grid faults ride-through and reactive power injection, which challenges power converter topologies, because the need for crowbar protection and/or power converter over-rating has been seen in the case of a doubly-fed induction generator. In this paper, power converter technologies are reviewed with focus on single/multi-cell power converter topologies. Further, case studies on the Low Voltage Ride Through demand to power converter technology are presented including a discussion on reliability. It is concluded that as the power level increases in wind turbines, medium voltage power converters will be a dominant power converter configuration.
机译:风力发电装机容量的稳定增长在2010年达到200吉瓦,加上单一风力涡轮机发电能力的扩大(制造商宣布了7兆瓦的装机容量),推动了功率转换器的研究和开发向全尺寸发电的方向发展。转换,降低成本pr kW,增加功率密度以及对更高可靠性的需求。为了遵守更严格的电网规范,尤其是电网故障穿越和无功功率注入做出了巨大的努力,这对功率转换器的拓扑构成了挑战,因为在这种情况下,人们已经意识到需要撬杠保护和/或功率转换器过高的额定值。双馈感应发电机。在本文中,对功率转换器技术进行了综述,重点是单/多单元功率转换器拓扑。此外,还介绍了对功率转换器技术的低电压穿越需求的案例研究,其中包括关于可靠性的讨论。结论是,随着风力涡轮机中功率水平的提高,中压功率转换器将成为主要的功率转换器配置。

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