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Quasi-active power factor correction with a variable inductive filter: theory, design and practice

机译:可变电感滤波器的准有功功率因数校正:理论,设计和实践

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摘要

The mains current in an AC/DC converter contains periodic current pulses, due to the action of the rectifier and the output buffer capacitor. The high current peaks cause harmonic distortion of the supply current and low power factor. Introducing active power factor correction in the form of a boost pre-regulator can reduce the level of harmonics. Passive power factor correction in the form of an input filter inductor is less expensive but the component is bulky because it must be sized to handle the full power range of the supply. This paper investigates the use of variable inductance (the inductance varies with current), which provides adequate harmonic reduction. Three types of inductors are investigated: an inductor with a fixed air-gap operating with a saturated core, a swinging inductor which has a stepped gap and a novel inductor construction with a sloped air-gap (SAG). Results are presented for a 200 W power supply and it is shown that the SAG inductor has the best performance in terms of harmonic response and size.
机译:由于整流器和输出缓冲电容器的作用,AC / DC转换器中的市电电流包含周期性的电流脉冲。高电流峰值导致电源电流的谐波失真和低功率因数。以升压预调节器的形式引入有功功率因数校正可以降低谐波水平。输入滤波器电感形式的无源功率因数校正价格便宜,但该组件体积庞大,因为必须确定其尺寸以适应电源的整个功率范围。本文研究了可变电感(电感随电流变化)的使用,它可以提供足够的谐波降低。研究了三种类型的电感器:带有固定气隙且使用饱和磁芯工作的电感器,具有阶梯状气隙的摆动电感器和具有倾斜气隙(SAG)的新型电感器结构。给出了200 W电源的结果,结果表明SAG电感器在谐波响应和尺寸方面具有最佳性能。

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