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Analysis and compensation of circulating currents errors in modular multilevel converters in low-frequency operation

机译:低频运行中模块化多级转换器循环电流误差的分析与补偿

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摘要

Errors in the injected high-frequency circulating currents are originally investigated for modular multilevel converters (MMCs) in low-speed drive operation. The mathematical analysis reveals that the magnitude and phase errors in the injected circulating currents cause serious energy imbalance in the MMC arms, resulting in large voltage fluctuations in the submodules. Furthermore, these fluctuations get larger when the circulating currents are injected at higher frequencies, which reduces the drive system stability and damages the submodule capacitors. A remedy approach is proposed to minimise the error effects by adjusting the circulating current command. A full-scale system comprising a 1 MVA MMC and a 1 MW induction machine is simulated to verify the theoretical analysis. The experimental investigation of a down-scale MMC feeding an inductor is also conducted to validate the theoretical results.
机译:注入的高频循环电流中的误差最初在低速驱动操作中进行模块化多级转换器(MMC)。数学分析表明,注入的循环电流中的幅度和相位误差导致MMC臂中的严重能量不平衡,导致子模块中的大电压波动。此外,当在较高频率下注入循环电流时,这些波动会变大,这降低了驱动系统稳定性并损坏了子模块电容器。提出了一种补救方法来通过调整循环电流命令来最小化误差效果。模拟包括1 MVA MMC和1 MW感应机的全尺度系统以验证理论分析。还进行了对灌注电感器的下级MMC的实验研究以验证理论结果。

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