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Hybrid multi-carrier PWM technique with computationally efficient voltage balancing algorithm for modular multilevel converter

机译:用于模块化多级转换器计算高效电压平衡算法的混合多载波PWM技术

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Phase-shifted pulse width modulation (PS-PWM) technique is preferred for modular multilevel converters (MMCs) as it has even power distribution and also ensures uniform switch utilization among the submodules (SMs). In contrast, phase disposition PWM (PD-PWM) technique has superior output voltage profile, but suffers from unequal switch utilization. A new PWM technique is proposed in this paper, having the best features of the PS-PWM and PD-PWM. The SM capacitor voltage balancing algorithm has to be incorporated with the modulation scheme to maintain SM voltages at defined voltage level. This paper also presents a modified SM capacitor voltage balancing approach which can be easily implemented with any type of carrier-based PWM technique. The proposed balancing algorithm, as well as PWM technique can be extended to any level of MMC and also applicable to any SM type. The effectiveness of proposed PWM technique is validated for five-level MMC with flying capacitor SMs (FCSM) under different operating conditions against PS-PWM and PD-PWM by simulation results in PLECS platform.
机译:相移脉冲宽度调制(PS-PWM)技术对于模块化多级转换器(MMC)优选,因为它具有均匀的配电,并且还确保子模块(SMS)之间的均匀开关利用率。相比之下,相位置位PWM(PD-PWM)技术具有优异的输出电压曲线,但是开关利用率不等。本文提出了一种新的PWM技术,具有PS-PWM和PD-PWM的最佳特征。 SM电容器电压平衡算法必须与调制方案合并,以维持限定电压电平的SM电压。本文还介绍了改进的SM电容器电压平衡方法,可以通过任何类型的基于载波PWM技术轻松实现。所提出的平衡算法以及PWM技术可以扩展到任何级别的MMC,也适用于任何SM类型。通过仿真降低PLECS平台的不同操作条件,在不同的操作条件下,采用飞载电容器SMS(FCSM)的五级MMC验证了所提出的PWM技术的有效性.PD-PWM。

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