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A DSP based power factor correction converter to reduce total harmonic distortion of input current for improvement of power quality

机译:基于DSP的功率因数校正转换器,可减少输入电流的总谐波失真,从而改善电源质量

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摘要

This paper proposes a controlled approach to be used in power factor correction (PFC) circuits to decrease total harmonic distortion (THD) of input current by eliminating the input current harmonics. This method removes the problems of the conventional PFC converters. Since in conventional PFC circuits the input current is controlled to follow the ac input voltage, it will have the same harmonics of the input voltage. This is an important disadvantage of the conventional method especially when the input voltage is distorted. In this approach, a sinusoidal signal is generated by the DSP microprocessor and is used as reference in controlling the converter switch to obtain a sinusoidal input current based on zero crossing points of distorted input voltage. Due to the reflection of input voltage distortions to the output voltage, an adaptive digital FIR filter is designed and embedded into the voltage control loop. The feed forward is also used into the control algorithm. The implementation of feed forward and adaptive digital FIR filter improves the converter performance to obtain a near unity power factor correction with lower input current THD. Average current control mode is implemented and operated in continuous conduction mode. The experiments performed in the laboratory for different cases of operation verify the theoretical and simulation studies performed in MATLAB/Simulink. The control approach is programmed by the TMS320F2812 DSP microprocessor. The experimental results are good in accordance with IEC 61000-3-2 Current Harmonic Standard.
机译:本文提出一种可用于功率因数校正(PFC)电路的受控方法,以通过消除输入电流谐波来降低输入电流的总谐波失真(THD)。该方法消除了常规PFC转换器的问题。由于在传统的PFC电路中,输入电流被控制为跟随交流输入电压,因此它将具有与输入电压相同的谐波。这是传统方法的重要缺点,尤其是在输入电压失真时。在这种方法中,DSP微处理器会生成一个正弦信号,并将其用作控制转换器开关以基于失真的输入电压的零交叉点获得正弦输入电流的参考。由于输入电压失真会反射到输出电压,因此设计了自适应数字FIR滤波器并将其嵌入到电压控制环路中。前馈也用于控制算法。前馈和自适应数字FIR滤波器的实现提高了转换器性能,从而以较低的输入电流THD获得接近单位的功率因数校正。实现平均电流控制模式并以连续导通模式运行。在实验室针对不同情况下进行的实验验证了在MATLAB / Simulink中进行的理论和仿真研究。该控制方法由TMS320F2812 DSP微处理器编程。根据IEC 61000-3-2电流谐波标准,实验结果良好。

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