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Fundamental Frequency Sorting Strategy for Capacitor Voltage Balance of Modular Multilevel Converters with Phase Disposition PWM

机译:具有相位处理PWM的模块化多级转换器电容电压平衡的基本频率分类策略

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Modular multilevel converters (MMCs) become more and more attractive in high-voltage and high-power applications. The balance of the floating capacitor voltages is vital for MMCs. In order to balance the capacitor voltages, a fundamental frequency sorting strategy with Phase Disposition PWM is proposed in this paper. A dual sorting method, which sorts the capacitor voltage increments and the present capacitor voltages simultaneously, is implemented to change the relationship between the carriers and the sub-modules once in every fundamental period. Due to the low sorting frequency, the intensive computation of the controllers is avoided. Moreover, the switching commutations are evenly distributed among the power devices. Furthermore, the measurement of the arm current is eliminated, which further simplifies the communication among different controllers. Finally, the proposed voltage balance strategy is validated by simulation and experiment.
机译:模块化多级转换器(MMC)在高压和高功率应用中变得越来越有吸引力。浮动电容电压的平衡对于MMC至关重要。为了平衡电容电压,本文提出了一种具有相位置位PWM的基本频率分选策略。通过同时对电容器电压增量和本电容器电压进行排序的双重分选方法以在每个基本时段中改变载波和子模块之间的关系。由于排序频率低,避免了控制器的密集计算。此外,切换换向在功率器件中均匀分布。此外,消除了臂电流的测量,这进一步简化了不同控制器之间的通信。最后,通过模拟和实验验证了所提出的电压平衡策略。

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