Circulating currents suppression strategies for modular multilevel converter

A. O. Almeida, Frederico T. Ghetti, Adeilson S. B. Ribeiro, P. M. de Almeida, P. G. Barbosa
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引用次数: 10

Abstract

This work presents a comparative study of two control strategies proposed to minimize the circulating currents in modular multilevel converters. Different control strategies and algorithms can be used to regulate and equalize the DC voltages of the submodules of modular converters. However, despite of the accurate voltage regulation, circulating currents arise between the positive and negative arms of the converter's branches, as well as between the phases of the converter, due to small imbalances on the terminal and submodules voltages. Thus, a mathematical modeling of the circulating current is presented and the performance of two strategies, one based on dq synchronous reference frame controller and the other based on a resonant controller, are investigated. Simulations results are presented to validate the theoretical analyses and to evaluate the effectiveness of both controllers to minimize the circulating currents of the modular converters.
模块化多电平变换器的循环电流抑制策略
本文对模块化多电平变换器中两种控制策略进行了比较研究,以最小化回路电流。可采用不同的控制策略和算法来调节和均衡模块化变换器各子模块的直流电压。然而,尽管有精确的电压调节,由于终端和子模块电压的小不平衡,在变流器支路的正臂和负臂之间以及变流器的相之间会产生循环电流。为此,本文建立了循环电流的数学模型,并对基于dq同步参考系控制器和基于谐振控制器的两种策略的性能进行了研究。仿真结果验证了理论分析的正确性,并评价了两种控制器在减小模块变换器循环电流方面的有效性。
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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