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Integrated Modulation of Dual-Parallel Three-Level Inverters With Reduced Common Mode Voltage and Circulating Current

机译:具有减少的共模电压和循环电流的双行三级逆变器的集成调制

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摘要

Many reduced common mode voltage (CMV) modulation methods have been proposed for three-level inverters. However, most of them suffer from large current distortion because only part of the available base vectors is utilized. The interleaved paralleling can reduce both CMV and the output current distortion, though the CMV reduction is limited and large zero-sequence circulating current (ZSCC) is inevitably caused by the phase-shifted carriers. To further reduce the CMV while maintaining smaller current distortion and ZSCC, a five-level reduced CMV (RCMV) modulation method is proposed in this article, which treats the parallel inverters as a whole. Theoretical analysis reveals that the integrated modulation provides additional base vectors that contribute to smaller total harmonic distortion (THD) of the current, and the selected vectors ensure the nearest-three-vector synthesis and half-reduced CMV. The switching sequences design and neutral point balancing strategy are also developed for dual-parallel three-level inverters, ensuring that the average circulating current is zero and the neutral point voltage is balanced, which are both critical to the proper operation of parallel inverters. Superior performance in terms of CMV, THD, and ZSCC provided by the proposed method in comparison with conventional modulation is verified by comprehensive simulation and experimental results.
机译:已经提出了许多减少的共模电压(CMV)调制方法,用于三级逆变器。然而,它们中的大多数遭受大的电流失真,因为仅利用了一部分可用的基础矢量。交织的并联可以减少CMV和输出电流失真,尽管CMV还原是有限的并且大的零序循环电流(ZSCC)不可避免地由相移载波引起。为了进一步降低CMV,同时保持较小的电流失真和ZSCC,本文提出了一种五级减少的CMV(RCMV)调制方法,其将平行逆变器整体处理。理论分析表明,集成调制提供了额外的基础向量,该基部向量有助于较小的电流总谐波失真(THD),并且所选择的向量确保最接近的三向载体合成和半减少的CMV。还开发了用于双行三级逆变器的开关序列设计和中性点平衡策略,确保平均循环电流为零,并且中性点电压是平衡的,这对于并行逆变器的适当操作至关重要。通过综合模拟和实验结果验证了通过综合模拟和实验结果验证了与常规调制相比提供的CMV,THD和ZSCC方面的卓越性能。

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