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Circulating Harmonic Currents Suppression of Level-Increased NLM Based Modular Multilevel Converter With Deadbeat Control

机译:循环谐波电流抑制水平增加的基于NLM的模块化多电平转换器,具有止血控制

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摘要

This article first analyzes the effect of the level-increased nearest level modulation (NLM) to the circulating current of the modular multilevel converter (MMC). The total inserted submodule (SM) number in one phase-leg of the MMC is variable using the level-increased NLM, which can significantly increase the peak-to-peak value of the circulating harmonic currents. Then, a circulating harmonic currents suppression method is proposed by applying deadbeat control for the MMC with level-increased NLM. Compared with the existing direct circulating current control approaches for the MMC, the proposed method presents specific extension and adjustment principle of the total inserted SM number. Therefore, the proposed method can improve the dynamic control performance and handle large circulating harmonic currents at steady state. And it can well coordinate the modulation and circulating harmonic currents suppression stages to avoid disturbing the ac-side output voltage while regulating the circulating current. The effectiveness of the proposed method is evaluated by a single-phase industrial-level simulated MMC system and a laboratory experimental platform.
机译:本文首先分析了水平增加的最近水平调制(NLM)对模块化多电平转换器(MMC)的循环电流的影响。 MMC的一个相腿中的总插入的子模块(SM)数量是使用水平增加的NLM变量,这可以显着增加循环谐波电流的峰值值。然后,通过对MMC进行水平增加的NLM来应用Deadbeat控制来提出循环谐波电流抑制方法。与MMC的现有直接循环电流控制方法相比,所提出的方法介绍了总插入的SM编号的特定延伸和调整原理。因此,该方法可以在稳态上提高动态控制性能并处理大的循环谐波电流。并且它可以很好地坐标调制和循环谐波电流抑制阶段,以避免在调节循环电流的同时扰乱交流侧输出电压。所提出的方法的有效性由单相工业级模拟MMC系统和实验室实验平台评估。

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