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Circulating Current Harmonics Suppression for Modular Multilevel Converters Based on Repetitive Control

机译:基于重复控制的模块化多电平变换器的循环电流谐波抑制

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Modular multilevel converters (MMCs) have emerged as the most promising topology for high and medium voltage applications for the coming years. However, one particular negative characteristic of MMCs is the existence of circulating current, which contains a dc component and a series of low-frequency even-order ac harmonics. If not suppressed, these ac harmonics will distort the arm currents, increase the power loses, and cause higher current stresses on the semiconductor devices. Repetitive control (RC) is well known due to its distinctive capabilities in tracking periodic signals and eliminating periodic errors. In this paper, a novel circulating current control scheme base on RC is proposed to effectively track the dc component and to restrain the low-frequency ac harmonics. The integrating function is inherently embedded in the RC controller. Therefore, the proposed circulating current control only parallels the RC controller with a proportional controller. Thus, conflicts between the RC controller and the traditional proportional integral (PI) controller can be avoided. The design methodologies of the RC controller and a stability analysis are also introduced. The validity of the proposed circulating current control approach has been verified by simulation and experimental results based on a three-phase MMC downscaled prototype.
机译:模块化多电平转换器(MMC)已经成为未来几年中高电压和中压应用最有希望的拓扑。但是,MMC的一个特殊的负特性是存在循环电流,该循环电流包含一个直流分量和一系列低频偶次交流谐波。如果不加以抑制,这些交流谐波将使臂电流失真,增加功率损耗,并在半导体器件上引起更高的电流应力。重复控制(RC)由于其在跟踪周期信号和消除周期错误方面的独特能力而众所周知。本文提出了一种基于RC的新型循环电流控制方案,可以有效地跟踪直流分量并抑制低频交流谐波。积分功能固有地嵌入在RC控制器中。因此,建议的循环电流控制仅将RC控制器与比例控制器并联。因此,可以避免RC控制器和传统比例积分(PI)控制器之间的冲突。还介绍了RC控制器的设计方法和稳定性分析。基于三相MMC缩减原型的仿真和实验结果已经验证了所提出的循环电流控制方法的有效性。

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