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A Novel Fundamental Frequency Modulation Strategy for Cascaded Multilevel STATCOM with Non-sinusoidal Load Currents

机译:具有非正弦负载电流的级联多级STATCOM的新型基本频率调制策略

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This work proposes an improved modulation method at the fundamental frequency modulation for STATCOM modular multilevel static compensators. One of the reasons for the voltage unbalance across the capacitors in the DC link of the individual cells at the multi-level compensator is the non-sinusoidality of the currents. A distinctive feature of the proposed modulation method compared to traditional FFM technologies is the monitoring of the voltage across the capacitors every quarter of the period and the elimination of voltage unbalance through the use of switching patterns with different peak-to-peak voltage ripple of the dc capacitor. At the same time, the advantages of traditional FFMs are preserved - low switching frequency and high efficiency. In addition, this method is applicable for CMC with a sufficiently large number of cells in phase. The effectiveness of the proposed modulation method is confirmed by the simulation results of 35 MVA 12-chain STATCOM for an electric arc furnace (EAF), the real currents of which are accepted as test signals.
机译:这项工作提出了一种用于STATCOM模块化多级静态补偿器的基本频率调制的改进调制方法。多电平补偿器中单个电池的直流链路中电容器两端电压不平衡的原因之一是电流的非正弦性。与传统的FFM技术相比,所提出的调制方法的一个显着特征是,每四个周期监测电容器两端的电压,并通过使用具有不同峰峰值电压纹波的开关模式来消除电压不平衡。直流电容器。同时,保留了传统FFM的优势-较低的开关频率和高效率。此外,此方法适用于具有足够数量的同相单元的CMC。 35 MVA 12链STATCOM用于电弧炉(EAF)的仿真结果证实了所提出的调制方法的有效性,该电弧炉的实际电流被接受为测试信号。

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