首页> 外文期刊>IEEE Transactions on Industrial Electronics >Interleaved Operation of Three-Level Neutral Point Clamped Converter Legs and Reduction of Circulating Currents Under SHE-PWM
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Interleaved Operation of Three-Level Neutral Point Clamped Converter Legs and Reduction of Circulating Currents Under SHE-PWM

机译:SHE-PWM下三电平中性点钳位的转换器支路的交错操作和循环电流的减小

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摘要

Interleaving of voltage-source converter (VSC) legs enables higher output currents per phase, effectively increasing the power rating without increasing semiconductor ratings. However, the interleaved operation results in circulating currents between each phase converter legs as well as a zero-sequence circulating current (ZSCC), which become quite prominent when the converters operate with low switching frequencies. This paper demonstrates the interleaved operation of three-level converters under selective harmonic elimination pulsewidth modulation (SHE-PWM). A controller for the circulating current within the legs of each phase is also proposed. The controller is used in combination with optimally selected SHE-PWM patterns to generate the maximum number of voltage levels and minimize the peak value of the circulating current. Simulation and experimental results show the interleaved operation and the effect of SHE-PWM pattern selection in the overall system.
机译:电压源转换器(VSC)支脚的交错可实现每相更高的输出电流,从而在不增加半导体额定值的情况下有效提高了额定功率。但是,交错操作会导致每个相转换器臂之间的循环电流以及零序循环电流(ZSCC),当转换器以低开关频率工作时,零序循环电流(ZSCC)变得尤为突出。本文演示了三电平转换器在选择性谐波消除脉冲宽度调制(SHE-PWM)下的交错操作。还提出了一种用于各相支路内循环电流的控制器。该控制器与最佳选择的SHE-PWM模式结合使用,以产生最大数量的电压电平并最小化循环电流的峰值。仿真和实验结果表明,交错操作和SHE-PWM模式选择在整个系统中的作用。

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