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An Isolated AC/DC Converter Using a Matrix Converter: A Feedback Control Method Considering the Non-linearity of a Diode Rectifier

机译:使用矩阵转换器的隔离式AC / DC转换器:一种考虑二极管整流器非线性的反馈控制方法

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This paper introduces a matrix converter control method for an isolated AC/DC converter with a resonant circuit that considers non-linearity of the diode rectifier. The method achieves a high output frequency equals to the switching frequency, a constant DC output voltage, sinusoidal input currents, and unity input power factor. Furthermore, soft switching with maximum output power factor is realized by a frequency control. In this type of circuit, the harmonics of the matrix converter output current are caused by the non-linearity of the diode rectifier. A conventional method neglects these harmonics, which cause input current distortion and DC voltage ripple. In a proposed method, the control variables are numerically calculated considering the non-linearity of the diode rectifier and implemented in a lookup table. In addition, a DC voltage feedback is applied to compensate for the effects of parameter error, e.g., voltage drop of the power semiconductor device and deadtime of the MC. The proposed method is evaluated experimentally.
机译:本文介绍了一种考虑谐振二极管非线性的带有谐振电路的隔离式AC / DC转换器的矩阵转换器控制方法。该方法可实现等于开关频率的高输出频率,恒定的DC输出电压,正弦输入电流和统一的输入功率因数。此外,通过频率控制实现具有最大输出功率因数的软切换。在这种类型的电路中,矩阵整流器输出电流的谐波是由二极管整流器的非线性引起的。传统方法忽略了这些谐波,这些谐波会导致输入电流失真和直流电压纹波。在提出的方法中,考虑二极管整流器的非线性对控制变量进行数值计算,并在查找表中实现。另外,施加DC电压反馈以补偿参数误差的影响,例如功率半导体器件的电压降和MC的停滞时间。实验方法对提出的方法进行了评估。

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