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首页> 外文期刊>IEEE Transactions on Industry Applications >Effect of DC ripple and commutation on the line harmonics of current-controlled AC/DC converters
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Effect of DC ripple and commutation on the line harmonics of current-controlled AC/DC converters

机译:直流纹波和换向对电流控制型AC / DC转换器的线路谐波的影响

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摘要

Line harmonics are usually predetermined under the simplified assumption that the DC current is sufficiently smoothed. But in practical operation of controlled converters, e.g., feeding medium-sized DC drives, DC ripple often cannot be neglected. For the predetermination of line harmonics, this means that the operating point is specified by the EMF and the mean value of the DC current, i.e., the associated control and commutation angles are unknown. The consideration of the basic effects of commutation and DC ripple leads to line current harmonics that are separated into positive and negative sequence systems. Selected results of systematic evaluations show the amplitude and phase as functions of DC reactance as well as of the EMF and mean DC current in the range of usual low- and medium-voltage supply networks. In comparison with the conventional precalculations assuming sufficient DC smoothing, significant deviations occur in the case of higher DC ripple.
机译:线路谐波通常是在简化假设下预先确定的,即直流电流已足够平滑。但是在受控转换器的实际操作中,例如,给中型直流驱动器供电,直流纹波通常不能被忽略。对于线路谐波的预定,这意味着工作点由EMF指定,并且直流电流的平均值(即相关的控制角和换向角)是未知的。考虑换向和直流纹波的基本影响会导致线路电流谐波分离为正序和负序系统。选定的系统评估结果表明,幅度和相位是直流电抗以及EMF的函数,并且在通常的低压和中压供电网络范围内具有平均DC电流。与假定足够的直流平滑度的常规预计算相比,在较高的直流纹波情况下会出现明显的偏差。

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