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Circulating Current Suppression for Multi-Function Parallel Three-Level Four-leg Converters

机译:多功能平行三级四级转换器循环电流抑制

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The multi-function parallel three-level four-leg converters are proposed for high power applications, which combine grid-connected renewable generation and active power filter (APF). However, the challenge of zero-sequence circulating current (ZSCC) is inevitably. ZSCC takes down the output currents quality and reduces the stability of the system. To suppress ZSCC, the model of ZSCC is established and analyzed in detail. It is revealing that ZSCC is mainly related to zero-sequence duty-cycle difference and benchmark function. Based on the analysis, a PI + feedforward control strategy is proposed to suppress ZSCC. It is realized by adjusting the duty cycle of the redundant vectors in each PWM sampling period. Experimental results verify the effectiveness of the proposed control strategy.
机译:为高功率应用提出了多功能并行三级四级转换器,其组合了网格连接的可再生生成和有源电力滤波器(APF)。 然而,零序循环电流(ZSCC)的挑战是不可避免的。 ZSCC取下输出电流质量并降低了系统的稳定性。 为了抑制ZSCC,详细建立和分析ZSCC模型。 据揭示ZSCC主要与零序占空比差和基准函数有关。 基于分析,提出了PI +前馈控制策略来抑制ZSCC。 通过调整每个PWM采样周期中的冗余矢量的占空比来实现。 实验结果验证了拟议的控制策略的有效性。

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