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On energy variations in modular multilevel converters with full-bridge submodules for Ac-Dc and Ac-Ac applications

机译:关于具有AC-Dc和Ac-Ac应用的全桥子模块的模块化多电平转换器中的能量变化

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The modular multilevel converter is a promising topology for high-voltage high-power applications. By the series-connection of submodules it can generate high-quality voltage waveforms with low harmonic distortion at low switching frequencies. The submodules are low-voltage converters with capacitive energy storages. These capacitive energy storages are a driving factor of the size, weight, and cost of the converter. For this reason it is important to ensure that the stored energy in the converter is distributed as evenly among the submodules as possible. In this paper it is found that during nominal operating conditions, a large amount of energy is moved back and forth between the upper and lower arms in the converter. These energy oscillations can, however, be reduced or even eliminated if an appropriate modulation index or voltage ratio is used. It is also found that an appropriate modulation index or voltage ratio can reduce the power rating of the semiconductors as well. The theoretical findings are validated by simulating two systems with different voltage ratios for ac-ac conversion.
机译:模块化多电平转换器是用于高压大功率应用的有希望的拓扑。通过子模块的串联,它可以在低开关频率下生成具有低谐波失真的高质量电压波形。子模块是带有电容储能器的低压转换器。这些电容式储能器是转换器尺寸,重量和成本的驱动因素。因此,重要的是要确保转换器中存储的能量尽可能均匀地分布在子模块之间。在本文中发现,在标称运行条件下,大量能量在转换器的上下臂之间来回移动。但是,如果使用适当的调制指数或电压比,则可以减少甚至消除这些能量振荡。还发现适当的调制指数或电压比也可以降低半导体的额定功率。通过模拟两个具有不同电压比的系统进行ac-ac转换,可以验证理论结果。

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