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A novel approach to active DC-Link capacitance reduction for single phase power factor correction circuits

机译:用于单相功率因数校正电路的有源DC-Link电容减小的新颖方法

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An alternative approach to DC link capacitance reduction and ripple suppression of single phase power factor correction circuits is presented. While the hardware part of the solution, consisting of a DC-DC converter transferring the oscillating power component to a reduced auxiliary capacitance is similar to other active solutions proposed in the literature by far, the operation principle is entirely different. Instead of regulating the DC link current, the proposed system gains control over the ripple by replacing the grid-interfacing converter in the task of regulating the DC link voltage. This allows increasing the voltage control bandwidth (thus reducing the ripple) without sacrificing the input power factor. The proposed method is applied to a 360W single-phase commercial PFC front end and is fully supported by experimental results.
机译:提出了另一种方法,用于降低单相功率因数校正电路的直流母线电容和抑制纹波。虽然该解决方案的硬件部分由将振荡功率分量传输到减小的辅助电容的DC-DC转换器组成,到目前为止与文献中提出的其他有源解决方案相似,但其工作原理却完全不同。在调节直流母线电压的任务中,建议的系统通过替换电网接口转换器,而不是调节直流母线电流,从而获得了对纹波的控制。这允许在不牺牲输入功率因数的情况下增加电压控制带宽(从而减少纹波)。所提出的方法应用于360W单相商用PFC前端,并得到实验结果的充分支持。

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