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Probabilistic modeling of harmonic currents produced by a twelve-pulse AC/DC converter under unbalanced supply voltage

机译:在不平衡电源电压下由十二脉冲AC / DC转换器产生的谐波电流的概率模型

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Previous work on harmonic modeling have shown that the probabilistic approach is suitable to harmonic prediction since it allows to take into account the randomly varying operating conditions of static converters. Although the six-pulse AC/DC power converter has already been the subject of probabilistic modeling, little consideration has been given to the twelve-pulse AC/DC power converter. In high power applications, such as large rated DC and AC drives, large rated DC power supplies, twelve-pulse AC/DC power converters are usually preferred since they allow a reduction of system disturbances due to harmonic currents. This paper presents an analysis of the random properties of harmonic currents produced by a twelve-pulse AC/DC power converter that operates under random variations of its DC load and voltage unbalance. The probability density functions of the amplitudes and the phase angles of the harmonic currents (of orders 12k/spl plusmn/1 and 12k-6/spl plusmn/l) are established and validated by results obtained from Monte Carlo simulations.
机译:先前关于谐波建模的工作表明,概率方法适用于谐波预测,因为它可以考虑静态转换器的随机变化的工作条件。尽管六脉冲AC / DC电源转换器已经成为概率建模的主题,但很少考虑十二脉冲AC / DC电源转换器。在大功率应用中,例如大额定值的DC和AC驱动器,大额定值的DC电源,通常首选十二脉冲AC / DC电源转换器,因为它们可以减少由于谐波电流引起的系统干扰。本文介绍了由十二脉冲AC / DC电源转换器产生的谐波电流的随机特性的分析,该转换器在其直流负载和电压不平衡的随机变化下运行。建立并通过从蒙特卡洛模拟获得的结果来验证谐波电流的幅度和相角(分别为12k / spl plusmn / 1和12k-6 / spl plusmn / l)的概率密度函数。

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