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Input Power Factor Correction using Buck Converter in Single Phase AC-DC Circuit

机译:在单相AC-DC电路中使用降压转换器校正输入功率因数

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摘要

The devices generally used in industrial, commercial and residential applications need to undergo rectification for their proper functioning and operation. They are connected to the grid comprising of non-linear loads and thus have non-linear input characteristics, which results in production of non-sinusoidal line current. Also, current comprising of frequency components at multiples of line frequency is observed which lead to line harmonics. Due to the increasing demand of these devices, the line current harmonics pose a major problem by degrading the power factor of the system thus affecting the performance of the devices. Hence there is a need to reduce the line current harmonics so as to improve the power factor of the system. This has led to designing of Power Factor Correction circuits.ududPower Factor Correction (PFC) involves two techniques, Active PFC and Passive PFC. In our project work, we have designed an active power factor circuit using Buck Converter for improving the power factor. Average Current Mode Control method has been implemented with buck converter to observe the effect of the active power factor corrector on the power factor. The advantage of using Buck Converter in power factor correction circuits is that better line regulation is obtained with appreciable power factor. ud
机译:通常在工业,商业和住宅应用中使用的设备需要经过整流才能正常运行。它们连接到由非线性负载组成的电网,因此具有非线性输入特性,从而导致产生非正弦线电流。而且,观察到由线频率倍数的频率分量组成的电流,这会导致线谐波。由于这些设备的需求增加,线电流谐波通过降低系统的功率因数而构成一个主要问题,从而影响了设备的性能。因此,需要减少线电流谐波,以提高系统的功率因数。这导致了功率因数校正电路的设计。 ud ud功率因数校正(PFC)涉及两种技术,有源PFC和无源PFC。在我们的项目工作中,我们使用降压转换器设计了一种有源功率因数电路,以改善功率因数。通过降压转换器实现了平均电流模式控制方法,以观察有源功率因数校正器对功率因数的影响。在功率因数校正电路中使用降压转换器的优势在于,在可观的功率因数下可获得更好的线路调节。 ud

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