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Analysis and Suppressing Method for the Output Voltage Harmonics of Modular Multilevel Converter

机译:模块化多电平转换器输出电压谐波的分析与抑制方法

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Although many high-power voltage source converters are of three-phase three-wire type, there may also be other types of configuration with which tripplen harmonics in the ac voltage and/or current are of great concern. This paper analyzes the harmonic characteristic of the output voltage of modular multilevel converter (MMC) in cases where the third-order harmonic voltage and current are inevitable, such as in three-phase four-wire configurations. The interaction among the capacitor voltage, arm current, and the modulating signal will generate multiple harmonics in the output voltage, in which the third-order harmonic is the most dominant. The third-order harmonic in the MMC output voltage will cause excessive amount of third-order harmonic in the output current in grid-connected applications with three-phase four-wire configuration. Analytical expression for the output voltage is derived for open-loop case, considering both the fundamental-frequency reference signal and the circulating current-control signal in the modulating signals. A feedforward compensation (FFC) method is proposed for suppressing the influence of the third-order harmonic in the output voltage for grid-connected applications. Simulation and experimental results verified the correctness of the analysis and effectiveness of the proposed FFC method.
机译:尽管许多大功率电压源转换器是三相三线式的,但也可能存在其他类型的配置,在这些配置中,交流电压和/或电流中的三重谐波非常重要。本文分析了在三阶谐波电压和电流不可避免的情况下(例如在三相四线配置中)模块化多电平转换器(MMC)输出电压的谐波特性。电容器电压,臂电流和调制信号之间的相互作用将在输出电压中产生多个谐波,其中三次谐波是最主要的。在具有三相四线配置的并网应用中,MMC输出电压中的三次谐波会在输出电流中引起过多的三次谐波。对于开环情况,导出了输出电压的解析表达式,同时考虑了基频参考信号和调制信号中的循环电流控制信号。提出了一种前馈补偿(FFC)方法,用于抑制并网应用输出电压中的三次谐波的影响。仿真和实验结果验证了所提出的FFC方法分析的正确性和有效性。

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