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Suppressing the Capacitor Voltage Fluctuations in Low Frequency Operation of Modular Multilevel Converters

机译:抑制模块化多级转换器的低频操作中的电容器电压波动

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摘要

Low frequency operation in the modular multilevel converters (MMCs) is enabled by applying a reference common mode voltage and circulating currents at a frequency much higher than the desired output frequency. The frequency of injected common-mode signals is limited for maintaining a good performance in the circulating current control. Firstly, this paper theoretically analyzes the effect of increasing the frequency of injected common-mode signals by evaluating the error between reference and actual circulating currents. Secondly, we introduce an additional parameter in the reference circulating current to enhance the suppression of MMC & x2019;s capacitor voltage fluctuations. Intensive computer simulations are developed for a seven-level MMC driving a medium-voltage induction motor drive system to verify the circulating current error analysis and assess the capacitor voltage fluctuations. Finally, the proposed technique for suppressing the capacitor voltage fluctuations is experimentally validated on a 600-V three-level MMC feeding an inductive load. The voltage fluctuations are reduced by more than 50 & x0025; (63.6 & x0025;) when the proposed technique is applied with a high common-mode frequency.
机译:通过在高于所需输出频率的频率下施加参考公共模式电压和循环电流,使能模块化多级转换器(MMCS)中的低频操作。注入的共模信号的频率受到限制,用于在循环电流控制中保持良好的性能。首先,本文理论上通过评估参考和实际循环电流之间的误差来增加注入的共模信号频率的效果。其次,我们在参考循环电流中引入附加参数,以增强MMC和X2019; S电容器电压波动的抑制。为七级MMC开发了强化计算机仿真,驾驶中压感应电机驱动系统,以验证循环电流误差分析并评估电容电压波动。最后,在馈送电感负载的600V三级MMC上实验验证了用于抑制电容器电压波动的所提出的技术。电压波动减少50〜x0025; (63.6&x0025;)当提出的技术以高共模频率应用时。

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