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Low Output Frequency Operation of Modular Multilevel Matrix Converter

机译:模块化多级矩阵变换器的低输出频率操作

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When the multilevel modular matrix converters (MMMC) operate at low frequency, sub-module (SM) capacitors voltage mainly contains doubling-output frequency component inversely proportion to output frequency, especially when MMMC operate at zero frequency, the voltage ripple of SM capacitor can be infinite in theory. This paper proposes two methods to solve the voltage ripple problem of MMMC operating at low frequency, even near zero. The first one injects high frequency zero-sequence voltage on the neutral point and injects high frequency negative-sequence currents to each phase. To suppress low frequency fluctuation, the magnitude and phase angle of the zero-sequence voltage changes according to low frequency power, without complicated calculation. The second method is called following feedback low frequency ripple envelope method. The low frequency ripple voltage is calculated by difference between the reference voltage value and the average voltage value of each phase, then got eliminated by use of feedback close-loop control. In this way, low frequency ripple can be detected and minimized. The Matlab/simulink simulation is built and the results have confirmed the validity and effectiveness of these methods.
机译:当多级模块化矩阵转换器(MMMC)在低频率下操作,子模块(SM)的电容器电压主要含有加倍输出频率分量成反比,以输出频率,尤其是当MMMC在零频率,SM电容器罐的电压纹波操作理论上是无限的。本文提出了解决了两种方法来解决低频下MMMC的电压纹波问题,甚至接近零。第一个在中性点上注射高频零序电压,并将高频负序电流注入每个阶段。为了抑制低频波动,零序电压的大小和相位角度根据低频功率而变化,无复杂计算。第二种方法被称为以下反馈低频纹波包络方法。低频纹波电压通过参考电压值与每个阶段的平均电压值之间的差来计算,然后通过使用反馈闭环控制来消除。以这种方式,可以检测到低频纹波并最小化。构建了MATLAB / SIMULINK仿真,结果确认了这些方法的有效性和有效性。

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