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Accurate mathematical steady-state models of arm and line harmonic characteristics for modular multilevel converter

机译:模块化多电平转换器的臂和线谐波特性的精确数学稳态模型

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The analysis of circulating current in Modular Multilevel Converter (MMC) has been greatly developed in recent years. However, most researches on the derivation of harmonic components of circulating current are based on the premise that no harmonic distortion is contained in the line current, but many MMC applications are against the premise. Hence, the harmonics in the line current inevitably cause large error in the previous analytical expressions of circulating current. Therefore, this paper proposes a more accurate mathematical steady-state model of harmonic components existed both in arm and line, and presents a more detailed relation between the inner and outer characteristics of MMC. Hence, the calculated instantaneous voltages and currents both in arm and line from the proposed models are much more accurate than existed researches, providing a great reference and improving the understanding for MMC engineering applications. The simulation results in PSCAD/EMTDC verify the correctness and high accuracy of the proposed models.
机译:近年来,模块化多电平转换器(MMC)中循环电流的分析得到了极大的发展。但是,大多数关于循环电流谐波分量推导的研究都是基于这样一个前提,即线路电流中不包含谐波失真,但是许多MMC应用都违背了这一前提。因此,线路电流中的谐波不可避免地在先前的循环电流分析表达式中引起较大的误差。因此,本文提出了一种更精确的数学模型,该模型在臂和线中都存在谐波分量,并提出了MMC内外特性之间更详细的关系。因此,从所提出的模型计算出的臂和线中的瞬时电压和电流都比现有的研究精确得多,这为MMC工程应用提供了很好的参考并加深了对它们的理解。 PSCAD / EMTDC中的仿真结果验证了所提出模型的正确性和高精度。

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