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Optimized design for multi-MW wind power converter based on efficiency and reliability

机译:基于效率和可靠性的多兆瓦风电变流器优化设计

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Multi-level power converters have been widely used in wind power field systems. For multi-MW wind power converter, its efficiency and reliability are the key issues in the whole wind power generation system. Multi-level wind power converters have many power semiconductors, whose power losses and reliability have great significances to the converters' efficiency and reliability. In this paper, an optimized design for multi-MW wind power converter based on efficiency and reliability is proposed. In the proposed optimized design, the high voltage IGBTs that are switched at high frequency, are replaced by serial lower voltage rating ones to reduce their power losses. The serial application of IGBTs can also increase the switching frequency of IGBTs while reducing the power losses. The increase of switching frequency can also bring many benefits. On the other side, the serial IGBTs can also improve power semiconductor's reliability, which can, as a result, improve wind power converter's reliability. The theoretical analysis indicates the advantage and feasibility of the proposed optimized design method.
机译:多电平功率转换器已被广泛应用于风力发电场系统中。对于多兆瓦风力发电转换器,其效率和可靠性是整个风力发电系统的关键问题。多级风力发电转换器具有许多功率半导体,其功率损耗和可靠性对转换器的效率和可靠性具有重要意义。本文提出了一种基于效率和可靠性的多兆瓦风电变流器的优化设计。在建议的优化设计中,以高频率开关的高压IGBT被串联的较低额定电压的IGBT取代,以减少其功率损耗。 IGBT的串行应用还可以提高IGBT的开关频率,同时减少功率损耗。开关频率的增加也可以带来很多好处。另一方面,串联IGBT也可以提高功率半导体的可靠性,从而可以提高风力发电转换器的可靠性。理论分析表明了该优化设计方法的优点和可行性。

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