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Single-stage single-switch isolated PFC regulator with unity power factor, fast transient response and low voltage stress

机译:具有统一功率因数,快速瞬态响应和低压应力的单级单开关隔离式PFC稳压器

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In this paper a simple control method is presented for a single-stage single-switch isolated PFC regulator that can simultaneously achieve unity power factor and fast output voltage regulation, while keeping the voltage stress of the storage capacitor low. The power converter topology comprises essentially a cascade combination of a discontinuous-mode boost converter and a continuous-mode forward converter. The proposed control utilises variation of both duty cycle and frequency. The role of varying the duty cycle is mainly to regulate the output voltage. Changing the frequency, moreover, can achieve unity power factor as well as low voltage stress. Basically, the switching frequency is controlled such that it has a time periodic component superposed on top of a static value. While the time periodic component removes the harmonic contents of the input current, the static value is adjusted according to the load condition so as to maintain a sufficiently low voltage stress across the storage capacitor. The theory is first presented which shows the possibility of meeting all three requirements using a combined duty-cycle and frequency control. An experimental prototype circuit is presented to verify the controller's functions.
机译:本文针对单级单开关隔离式PFC调节器提出了一种简单的控制方法,该方法可同时实现单位功率因数和快速输出电压调节,同时保持存储电容器的电压应力较低。功率转换器拓扑实质上包括不连续模式升压转换器和连续模式正向转换器的级联组合。所提出的控制利用占空比和频率的变化。改变占空比的作用主要是调节输出电压。而且,改变频率可以实现单位功率因数以及低电压应力。基本上,控制开关频率,使得其具有叠加在静态值之上的时间周期分量。在时间周期分量消除输入电流的谐波含量的同时,根据负载条件调整静态值,以便在存储电容器两端保持足够低的电压应力。首先介绍该理论,该理论表明使用占空比和频率控制相结合来满足所有三个要求的可能性。提出了一个实验原型电路,以验证控制器的功能。

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