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首页> 外文期刊>Electrical engineering in Japan >Development of a Novel Commutation Method that Sharply Reduces Commutation Failure of Matrix Converters
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Development of a Novel Commutation Method that Sharply Reduces Commutation Failure of Matrix Converters

机译:大幅减少矩阵转换器换相失败的新型换相方法的开发

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This paper proposes the safest novel commutation method for a matrix converter. There are two conventional commutation methods which depend on the polarity of the input line voltage (it is called "voltage commutation") and depend on the polarity of the output current (it is called "current commutation"). However, problem of the voltage commutation is that commutation failure occurs around zero of the input line voltage. It is difficult to detect its polarity due to depending on offset and delay of the sensor. Similarly, the current commutation failure occurs around zero of the load current. A cause of these detection errors are a detection delay and an offset of a sensor. The proposed commutation method combines the input voltage commutation and the load current commutation. Therefore, the proposed commutation method can decrease the commutation failure without high accuracy sensor. In addition, a voltage error compensation based on the proposed commutation method is proposed in this paper. The proposed method can simply compensate for the commutation error of the output voltage and the input current at the same time. The effects of the proposed method are confirmed by experimental results with a 750 W induction motor and a R-L load. Those results confirm that the proposed commutation can decrease commutation failure. Moreover, the total harmonics distortion of the input current and the output current are 2.6 point and 0.9 point lower than that of the condition without the compensation at 100% output power.
机译:本文提出了一种最安全的新型矩阵变换器换相方法。有两种常规的换向方法,它们取决于输入线电压的极性(称为“电压换向”)和取决于输出电流的极性(称为“电流换向”)。然而,电压换向的问题是换向失败发生在输入线电压的零附近。由于取决于传感器的偏移和延迟,很难检测其极性。类似地,电流换向失败发生在负载电流的零附近。这些检测错误的原因是检测延迟和传感器的偏移。提出的换向方法结合了输入电压换向和负载电流换向。因此,所提出的换向方法可以在没有高精度传感器的情况下减少换向失败。此外,本文提出了一种基于提出的换向方法的电压误差补偿。所提出的方法可以简单地同时补偿输出电压和输入电流的换向误差。 750 W感应电动机和R-L负载的实验结果证实了该方法的效果。这些结果证实了所提出的换向可以减少换向失败。而且,输入电流和输出电流的总谐波失真比在没有100%输出功率时没有补偿的情况下低2.6点和0.9点。

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