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Unity-Power-Factor Control Based on Precise Ripple Cancellation for Fast-Response PFC Preregulator

机译:基于精确纹波消除的统一功率因数控制,用于快速响应PFC预调节器

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摘要

Power-factor preregulators are commonly used in electronic equipments for minimizing the injection of current harmonics into the mains power line. However, the bandwidth of conventional preregulators are usually configured to be very small in order to achieve near-unity power factor, and this inevitably gives rise to poor dynamic response. Ripple estimation/cancellation method is used to eliminate the double-line frequency component from the sampled output voltage before it propagates into the voltage control loop, hence, the requirement of small bandwidth is not mandatory. The existing ripple estimation circuits, however, are only accurate under specific conditions, beyond which power factor will be degraded. In view of this, a new ripple estimation/cancellation network consisting of an amplitude tuner and a phase shifter based on switched-resistor circuits is proposed and verified experimentally on a 200-W boost power-factor preregulator. It is shown that the proposed ripple estimation network not only provides accurate ripple estimation over a wide range of operating conditions, it also gives a way to decouple the power factor of a preregulator from its controller bandwidth. With the aid of the proposed ripple estimation network, the desired features of fast dynamic response and unity power factor are both achieved.
机译:功率因数预调节器通常用于电子设备中,以最大程度地减少电流谐波注入到主电源线中。然而,常规的预调节器的带宽通常被配置为非常小,以实现接近统一的功率因数,这不可避免地导致较差的动态响应。纹波估计/消除方法用于在采样输出电压传播到电压控制环路之前从采样输出电压中消除双线频率分量,因此,对小带宽的要求不是强制性的。然而,现有的纹波估计电路仅在特定条件下才是准确的,超过该特定条件,功率因数将下降。鉴于此,提出了一种新的由幅度调谐器和基于开关电阻器电路的移相器组成的纹波估计/抵消网络,并在200W升压功率因数预调节器上进行了实验验证。结果表明,提出的纹波估计网络不仅可以在宽范围的工作条件下提供准确的纹波估计,而且还提供了一种将预调节器的功率因数与其控制器带宽分离的方法。借助提出的纹波估计网络,可以实现快速动态响应和单位功率因数的所需功能。

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