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Energy Storage Requirements of Full-bridge Modular Multilevel ConverterWith Zero Sequence Voltage Injection

机译:全桥模块化多电平转换器的储能要求零序电压注射

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Hybrid transmission systems associated with line commutated converters (LLC) and voltage source converters (VSC) have gradually become a particular solution for high voltage direct current (HVDC) transmission. The full-bridge sub-module (FBSM) based modular multilevel converter (FB-MMC) has gained significant attention for its dc voltage reversal and fault ride through capabilities. However, large capacitance is essential for high power transmission of FB-MMC, increasing cost and size rapidly. This paper analyzes the FBSM voltage fundamental frequency and second-order harmonic fluctuations of the FB-MMC with zero sequence voltage injection. The design principles of the FBSM capacitance are also presented compared with the one without zero sequence voltage injection under equivalent voltage ripple conditions. Finally, comparative simulation results on a FB-MMC system verify the correctness of the analyses.
机译:与线路换向转换器(LLC)和电压源转换器(VSC)相关联的混合传输系统逐渐成为高压直流(HVDC)传输的特定解决方案。基于全桥子模块(FBSM)的模块化多电平转换器(FB-MMC)对其直流电压反转和故障骑行的显着关注。然而,大电容对于FB-MMC的高功率传输是必不可少的,迅速增加成本和尺寸。本文分析了FB-MMC的FBSM电压基频和二阶谐波波动,零序电压注入。还呈现了FBSM电容的设计原理与在等效电压纹波条件下的没有零序电压注入的电容的设计原理。最后,FB-MMC系统上的比较仿真结果验证了分析的正确性。

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