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Influence of modulation and voltage balancing on spectral emission of modular multilevel converters

机译:调制和电压平衡对模块化多电平转换器频谱发射的影响

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Modular Multilevel Converters (MMC) are a common VSC topology for high power applications like HVDC. Different modulation techniques are being used with this converter topology. Low excitation of harmonics is considered an important advantage of multilevel VSCs, but the generation of a high frequency spectrum above 2 kHz due to the high number of switching devices has not yet been sufficiently investigated. This paper analyses the influence of the modulation strategy and voltage balancing algorithms on the voltage spectrum of the MMC. This is done by simulations of a MMC model using MATLAB / Simulink. Multi-Carrier Pulse Width Modulation strategies and Nearest Level Control are compared. Voltage balancing is analysed by a comparison of different variations of the sorting technique. Simulation results show that modulation affects general composition of the voltage spectrum while voltage balancing influences excitation of high frequency spectral components.
机译:模块化多电平转换器(MMC)是用于HVDC等高功率应用的常见VSC拓扑。此转换器拓扑结构使用了不同的调制技术。谐波的低激励被认为是多电平VSC的重要优势,但是由于开关装置数量众多,因此产生了高于2 kHz的高频谱。本文分析了调制策略和电压平衡算法对MMC电压谱的影响。这是通过使用MATLAB / Simulink对MMC模型进行仿真来完成的。比较了多载波脉冲宽度调制策略和最近电平控制。通过比较分选技术的不同变化来分析电压平衡。仿真结果表明,调制会影响电压频谱的总体组成,而电压平衡会影响高频频谱分量的激励。

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