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Defining the exact number of sub-module transitions in fundamental frequency modulated modular multilevel converters

机译:定义基本调频模块化多电平转换器中子模块转换的确切数量

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The large number of voltage levels and high quality of a modular multilevel converter (MMC) output voltage and current makes modulation at fundamental frequency a viable alternative. However, a staircase output voltage does not necessarily translate to fundamental switching frequency of the MMC submodules (SMs). This is because the voltage balancing algorithm usually requires several SMs to switch at any sampling period. This paper proposes a voltage balancing algorithm capable of controlling the exact number of SM transitions that are allowed within the arms of an MMC enabling improved regulation of the SM capacitor voltages. The proposed implementation can be extended to any modulation and circulating current control method. It is also shown that enabling the minimum additional transitions within the arm offers the best compromise between SM capacitor voltage ripple and increase in the switching frequency. The proposed method is verified for all operating points with extensive simulation results and demonstrated in an experimental prototype with five SMs per arm.
机译:大量的电压电平和高质量的模块化多电平转换器(MMC)输出电压和电流使得基频调制成为可行的选择。但是,阶梯输出电压不一定转换为MMC子模块(SM)的基本开关频率。这是因为电压平衡算法通常需要在任意采样周期切换多个SM。本文提出了一种电压平衡算法,该算法能够控制MMC支路中允许的SM跃迁的确切数目,从而改善对SM电容器电压的调节。所提出的实施方式可以扩展到任何调制和循环电流控制方法。还显示出,在支路内实现最小的附加跳变可在SM电容器电压纹波和开关频率增加之间取得最佳折衷。所提出的方法已针对所有工作点进行了验证,并获得了广泛的仿真结果,并在一个实验模型中得到了证明,该模型每臂有五个SM。

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