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A new duty cycle parallel control method and FPGA implementation for AC-DC converters with power factor correction (PFC)

机译:具有功率因数校正(PFC)的AC-DC转换器的新型占空比并行控制方法和FPGA实现

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A new duty cycle parallel control method for AC-DC converter with power factor correction is proposed. The duty cycle required to achieve unity power factor consists of two terms: current term and voltage term. They are calculated directly based on the reference current and sensed inductor current, input voltage and output voltage. It requires only one multiplication and three addition operations for digital implementation so that the proposed PFC control method can be implemented by a low cost DSP, microprocessor, FPGA or an ASIC to achieve high switching frequency. This duty cycle parallel control essentially distinguishes from the conventional current mode control in which there are two regulators, one for voltage regulation and one for current regulation. Test results for a digital PFC implementation show that the proposed method can achieve unity power factor under both steady and transient state. Sinusoidal input current can be achieved under nonsinusoidal input voltage condition. The switching frequency of FPGA control boost PFC is 400 kHz. The proposed duty cycle parallel control strategy has high potential for the next generation of high switching frequency PFC implementation, due to its lower calculation requirement, lower cost and better performance than average current mode control.
机译:提出了一种新的功率因数校正的AC-DC变换器占空比并行控制方法。实现单位功率因数所需的占空比包括两个项:电流项和电压项。它们是根据参考电流和感应到的电感器电流,输入电压和输出电压直接计算得出的。它仅需要一个乘法和三个加法运算就可以实现数字化,从而可以通过低成本的DSP,微处理器,FPGA或ASIC来实现所提出的PFC控制方法,以实现高开关频率。这种占空比并行控制实质上不同于传统的电流模式控制,在传统的电流模式控制中,有两个调节器,一个用于电压调节,一个用于电流调节。数字PFC实施的测试结果表明,该方法在稳态和瞬态下均可实现单位功率因数。在非正弦输入电压条件下可以实现正弦输入电流。 FPGA控制升压PFC的开关频率为400 kHz。所提出的占空比并行控制策略由于具有较低的计算要求,较低的成本和比平均电流模式控制更好的性能,因此对于下一代高开关频率PFC的实现具有很高的潜力。

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