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A modular multilevel converter with isolated energy-balancing modules for MV drives incorporating symmetrical six-phase machines

机译:具有隔离式能量平衡模块的模块化多电平转换器,用于带有对称六相电机的中压变频器

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A modular multilevel converter (MMC) configuration is presented as a medium-voltage high-power drive for variable-speed applications incorporating symmetrical six-phase machines. The topology employs six standard MMC phase-legs feeding two isolated groups of three-phase machine windings, each with 60° spatial phase-displacement. A novel concept of ripple-power decoupling between adjacent sub-modules (SMs) of MMC phase-legs, while feeding machine windings in a spatial phase-opposition fashion, is realized through isolated dc-dc converter modules. This concept offers a significant reduction in SM capacitance, while eliminating the problem of SM capacitor wide voltage fluctuations, especially at low operating frequencies. Furthermore, the proposed configuration can efficiently operate at near zero frequency, therefore a machine speed-range from zero speed up to the rated speed is possible under rated torque operating conditions. The proposed MMC configuration is analyzed in detail, and its performance is validated using both simulation and experimentation.
机译:模块化多电平转换器(MMC)配置作为具有对称六相电机的变速应用的中压大功率驱动器而提出。该拓扑采用六个标准MMC相脚,为两组隔离的三相电机绕组组供电,每组相绕组具有60°的空间相移。通过隔离的DC-DC转换器模块,实现了MMC相脚的相邻子模块(SM)之间的纹波功率去耦的新颖概念,同时以空间相位相反的方式给电机绕组供电。该概念极大地减小了SM电容,同时消除了SM电容器的宽电压波动问题,尤其是在低工作频率下。此外,所提出的配置可以在接近零频率的情况下有效地操作,因此在额定转矩操作条件下,机器速度范围从零速度到额定速度是可能的。详细分析了建议的MMC配置,并通过仿真和实验验证了其性能。

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