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A Family of Ripple Estimation–Cancellation Methods Based on Switched-Resistor Circuits and Their Application in Fast-Response PFC Preregulator

机译:基于开关电阻电路的纹波估计-抵消方法及其在快速响应PFC预调节器中的应用

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Power-factor-correction (PFC) preregulator commonly suffers from slow dynamic response due to the need to operate with small closed-loop bandwidth for realizing low total harmonic distortion of input current. Ripple cancellation is one of the widely adopted strategies to achieve high power factor and fast dynamic response simultaneously. The main idea is to eliminate the double-line frequency component in the sampled output voltage by means of subtracting a replica of the output voltage ripple from the sampled output voltage. In this paper, a systematic derivation and analysis of the main figures of merit of PFC preregulator incorporating ripple cancellation is presented. Based on the equations obtained, three variants of a family of ripple cancellation methods based on switched-resistor circuits are proposed. The performances of these methods are experimentally investigated and compared by implementing them in a 200-W average-current-mode-controlled boost PFC preregulator. By comparing the measured figures of merit, it is shown that near-perfect ripple cancellation is achievable when the amplitude and phase angle of the sampled output voltage ripple are estimated independently, whereas a more cost-effective solution is provided by another approach that tracks the ripple amplitude only at the expense of decreased power factor and increased total harmonic distortion.
机译:功率因数校正(PFC)预调节器通常会因需要以较小的闭环带宽工作以实现输入电流的低总谐波失真而遭受较慢的动态响应。纹波消除是被广泛采用的同时实现高功率因数和快速动态响应的策略之一。主要思想是通过从采样的输出电压中减去输出电压纹波的副本来消除采样的输出电压中的双线频率分量。本文对包含纹波消除的PFC预调节器的主要性能指标进行了系统推导和分析。基于获得的方程,提出了基于开关电阻电路的一系列纹波消除方法的三种变体。通过在200W平均电流模式控制的升压PFC预调节器中实施这些方法,对这些方法的性能进行了实验研究和比较。通过比较测量的品质因数,可以看出,当独立估计采样输出电压纹波的幅度和相角时,可以实现近乎完美的纹波消除,而另一种跟踪噪声的方法则提供了更具成本效益的解决方案纹波幅度仅以降低功率因数和增加总谐波失真为代价。

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