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A novel method for elimination of line-current harmonics in single-stage PFC switching regulators

机译:消除单级PFC开关稳压器中线电流谐波的新方法

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This paper studies a particular single-stage power-factor-correction (PFC) switching regulator employing a discontinuous-conduction-mode (DCM) boost-input cell and a continuous-current-mode (CCM) forward output cell. Although this single-stage PFC regulator can provide a reasonably high power factor when its PFC stage is operating in discontinuous mode, substantial reduction in line-current harmonics is possible by applying a suitable frequency-modulation scheme. This paper derives a frequency-modulation scheme and proposes a practical implementation using a simple translinear analog circuit. A quantitative analysis on the total harmonic distortion (THD) of the line current when the circuit is subject to a limited range of frequency variations is presented along with some considerations for practical design. Experimental data obtained from a prototype confirms the effectiveness of the proposed frequency-modulation scheme. The proposed analog translinear circuit allows custom integrated circuit implementation, making it a viable low-cost solution to the elimination of line-current harmonics in switching regulators.
机译:本文研究了一种特殊的单级功率因数校正(PFC)开关稳压器,该开关稳压器采用了不连续导电模式(DCM)升压输入单元和连续电流模式(CCM)正向输出单元。尽管此单级PFC稳压器在其PFC级以不连续模式运行时可以提供相当高的功率因数,但通过应用合适的频率调制方案,可以大幅降低线电流谐波。本文推导了一种频率调制方案,并提出了使用简单的跨线性模拟电路的实际实现方案。提出了对电路在有限频率范围内变化时线路电流的总谐波失真(THD)的定量分析,以及一些实际设计的考虑因素。从原型获得的实验数据证实了所提出的频率调制方案的有效性。拟议的模拟跨线性电路允许定制的集成电路实现,使其成为消除开关稳压器中的线电流谐波的可行的低成本解决方案。

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