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Hybrid Modulation Scheme for Switching Loss Reduction in a Modular Multilevel High-Voltage Direct Current Converter

机译:用于模块化多级高压直流转换器的开关损耗的混合调制方案

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A modular multilevel converter (MMC) is regarded as a promising topology in high-voltage direct current systems. However, the MMC consists of numerous submodules (SMs) and switching devices, which lead to a considerable switching loss, and increased cost and size of the heat sink. To mitigate these issues, this paper presents a novel modulation method composed of fundamental frequency modulation (FFM) and multicarrier-based sinusoidal pulsewidth modulation schemes. The main purpose of this modulation method is the reduction of switching loss while maintaining good harmonic performance. However, the FFM scheme leads to the unbalanced capacitor voltage of each SM in the MMC. Accordingly, this paper additionally proposes the rotation method and selective voltage balancing control for SMs to ensure effective performance of the method. Simulation and experimental results verify the effectiveness and performance of the proposed modulation scheme through switching loss and spectral analyses.
机译:模块化多电平转换器(MMC)被认为是高压直流系统中有前途的拓扑。然而,MMC由许多子模块(SMS)和开关装置组成,这导致了相当大的开关损耗,并增加了散热器的成本和尺寸。为了缓解这些问题,本文提出了一种新的调制方法,由基于基于基于频率调制(FFM)和基于多载波的正弦脉冲脉冲宽度调制方案组成的新型调制方法。该调制方法的主要目的是减少开关损耗,同时保持良好的谐波性能。然而,FFM方案导致MMC中每个SM的不平衡电容器电压。因此,本文还提出了用于SMS的旋转方法和选择性电压平衡控制,以确保该方法的有效性能。仿真和实验结果验证了通过开关损耗和光谱分析来验证所提出的调制方案的有效性和性能。

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