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Input impedance and current feedforward control for leading-lagging phase admittance cancellation in the AC-DC boost converter

机译:输入阻抗和电流前馈控制,用于消除AC-DC升压转换器中的滞后相位导纳

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摘要

This paper introduces an input impedance and current (IIC) feedforward control with leading-lagging phase admittance cancellation (LLPAC) for ac-dc boost converter applications requiring higher efficiency and higher power quality. Whereas the conventional voltage feedforward method guarantees its ideal input admittance by generating average switch voltage effectively under well-regulated current compensator, the proposed IIC method contains an extra compensation term reducing the effects of external input parameters as well as an average switch voltage, resulting in improving input power quality in low switching frequency and high line frequency applications. Consequently, the proposed method allows obtaining more constant input admittance in both regions of leading and lagging-phase. In order to compare three different control approaches, the small-signal input admittances of the ac/dc boost converters are modeled and analyzed. A MATLAB/Simulink model and a 1.2kW dual boost PFC prototype board controlled by a digital signal processor are implemented to demonstrate the effectiveness of the proposed IIC feedforward control.
机译:本文介绍了具有超前滞后相位导纳消除(LLPAC)的输入阻抗和电流(IIC)前馈控制,适用于要求更高效率和更高电能质量的AC-DC升压转换器应用。常规的电压前馈方法通过在调节良好的电流补偿器下有效生成平均开关电压来保证其理想的输入导纳,而所提出的IIC方法包含一个额外的补偿项,可减少外部输入参数以及平均开关电压的影响,从而在低开关频率和高线路频率应用中改善输入功率质量。因此,所提出的方法允许在超前相位和滞后相位两个区域中获得更恒定的输入导纳。为了比较三种不同的控制方法,对AC / DC升压转换器的小信号输入导纳进行了建模和分析。实现了一个MATLAB / Simulink模型和一个由数字信号处理器控制的1.2kW双升压PFC原型板,以证明所提出的IIC前馈控制的有效性。

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