Circulating Current Injection Method for the Modular Multilevel Converter

Guanlong Jia, Mingshuo Li, X. Su, Song Tang, Xiaoming Liu, Wentao Jiang
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Abstract

The circulating current of modular multilevel converter (MMC) is an inherent phenomenon. The existing circulating current analysis methods have mainly considered the power losses and the submodule (SM) capacitor voltage. Under low-frequency operation, MMC SM has a larger capacitor voltage ripple, and this paper proposes a novel circulating current injection method to reduce the SM capacitor voltage ripple. The method is based on injecting a circulating current, which is easily derived by the instantaneous information of MMC, within the phase to attenuate the lower frequency arm powers. And, it omits using an extensive lookup table and injecting a common-mode voltage, thus simplifies the control and avoids causing over-modulation. In addition, a mathematical analysis model is built and it reveals the impact on the SM capacitor voltage ripple. The effectiveness of the introduced circulating current injection method is demonstrated by the experimental results.
模块化多电平变换器的循环电流注入方法
模块化多电平变换器(MMC)的循环电流是一种固有现象。现有的循环电流分析方法主要考虑功率损耗和子模块(SM)电容电压。低频工作时,MMC - SM电容电压纹波较大,本文提出了一种新的循环电流注入方法来减小SM电容电压纹波。该方法是基于在相位内注入循环电流来衰减低频臂功率,该循环电流很容易由MMC的瞬时信息导出。并且,它省去了使用广泛的查找表和注入共模电压,从而简化了控制并避免了引起过调制。此外,还建立了数学分析模型,揭示了其对SM电容电压纹波的影响。实验结果验证了所引入的循环电流注入方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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