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Capacitor voltage balancing based on fundamental frequency sorting algorithm for modular multilevel converter

机译:基于模块化多级转换器基础频率分选算法的电容电压平衡

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In recent years, Modular Multilevel Converter (MMC) is an emerging and highly attractive multilevel converter topology for High Voltage Direct Current (HVDC) transmission and Flexible AC Transmission System (FACTS). The technology on how to balance the floating DC capacitors plays a key role in the new converters. A Fundamental Frequency Sorting Algorithm (FFSA) based on Carrier Phase Shift PWM (CPS-PWM) is proposed to balance the floating DC capacitors. The main idea is to change the corresponding relationship between the CPS-PWM carriers and the submodules according to the capacitor voltage increments during the previous fundamental period. It utilizes no current detection, avoids the excessive frequent sorting and saves calculating resources for the controller so that more submodules can be dealt with. Moreover, the proposed FFSA guarantees that all the switching frequencies of the submodules are strictly identical, which equals to the PWM carrier frequency. It is beneficial for the thermal design of the sub-modules and the lifetime of the power switches. Finally, simulation and experimental results verify the validity of the proposed balancing method.
机译:近年来,模块化多电平转换器(MMC)是一种用于高压直流(HVDC)传输和柔性AC传输系统(事实)的新出现和高度吸引力的多级转换器拓扑。关于如何平衡浮动直流电容的技术在新转换器中发挥着关键作用。提出了一种基于载波移相PWM(CPS-PWM)的基本频率分选算法(FFSA)来平衡浮动直流电容器。主要思想是根据先前的基本周期期间根据电容器电压增量改变CPS-PWM载波和子模块之间的相应关系。它不使用电流检测,避免过度频繁排序并节省控制器的计算资源,以便可以处理更多的子模块。此外,所提出的FFSA保证了子模块的所有开关频率是严格相同的,这等于PWM载波频率。它有利于子模块的热设计和电源开关的寿命。最后,模拟和实验结果验证了所提出的平衡方法的有效性。

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