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Control strategy to balance operation of parallel connected legs of modular multilevel converters

机译:平衡模块化多电平变流器并联支路运行的控制策略

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摘要

Connecting legs of modular multilevel converters (MMCs) in parallel can assist an MMC-based high-voltage direct current (HVDC) to increase its current ratings and hence overall power handling capability. Consequently, each phase of the MMC would be integrated by several legs or sets of upper and lower arms (ULAs). This paper proposes a current control strategy for each ULA in order to ensure balanced current sharing among them. In addition, each ULA has its own circulating current control that follows a reference obtained from the instantaneous magnitudes of the output current and the modulation signal. All the proposed control actuations do not distort the phase output voltage of the MMC which follows the reference voltage. The performance of the proposed control strategies is evaluated by simulation studies in the PLECS Blockset under MATLAB/Simulink software platform.
机译:并联的模块化多电平转换器(MMC)的支路可帮助基于MMC的高压直流(HVDC)增加其额定电流,从而提高整体功率处理能力。因此,MMC的每个阶段都将由几条腿或多组上下臂(ULA)集成。本文为每个ULA提出了一种电流控制策略,以确保在它们之间实现均衡的电流共享。此外,每个ULA都有自己的循环电流控制,该控制遵循从输出电流和调制信号的瞬时幅度获得的参考。所有提出的控制致动都不会使跟随参考电压的MMC的相位输出电压失真。通过在MATLAB / Simulink软件平台下的PLECS Blockset中进行仿真研究,可以评估所提出控制策略的性能。

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