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Device Loading of a Modular Multilevel Converter in Wind Power

机译:风力发电中模块化多电平转换器的设备加载

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Modular multilevel converter (MMC) is a recently emerged multilevel topology for high-voltage high-power applications. However, in wind power applications, to the best of the authors knowledge, the performance of the MMC has not been extensively investigated. In this paper, the application of the MMC to wind energy systems is studied. The converters used to connect the wind turbine to the grid, which have rated active powers of 2MW and 10MW, are proposed and investigated. The electrical losses and thermal loading of the power devices in the proposed converter solutions are analyzed based on the gird conditions/requirements for wind power. The efficiency of the MMC under different P/Q boundaries defined by grid codes is investigated and compared with two-level (2L) and three-level (3L) neutral point clamped converters. It is concluded that it is possible to use the MMC in wind power applications, and the losses are evenly distributed between the submodules of the MMC. However, inside a submodule, the losses of the power devices are not equal, which may lead to the de-rating of the converter.
机译:模块化多电平转换器(MMC)是一种最近出现的用于高压大功率应用的多电平拓扑。但是,在风力发电应用中,就作者所知,MMC的性能尚未得到广泛研究。本文研究了MMC在风能系统中的应用。提出并研究了用于将风力涡轮机连接到电网的转换器,其额定有功功率为2MW和10MW。根据风电的电网条件/要求,分析了提出的转换器解决方案中功率器件的电损耗和热负荷。研究了电网代码定义的不同P / Q边界下MMC的效率,并将其与两级(2L)和三级(3L)中性点钳位转换器进行了比较。结论是可以在风电应用中使用MMC,并且损耗在MMC的子模块之间平均分配。但是,在子模块内部,功率设备的损耗不相等,这可能导致转换器降额。

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