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Practical design and evaluation of a 1 kW PFC power supply based on reduced redundant power processing principle

机译:基于减少冗余功率处理原理的1 kW PFC电源的实用设计和评估

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摘要

Using the reduced redundant power processing (R²P²) principle, a single-phase power-factor correction (PFC) power supply can achieve a higher overall efficiency as a result of the use of a noncascading structure that involves less repeated processing of the input power. This paper investigates a single-phase noncascading PFC power supply based on the R²P² principle. The circuit employs a current-fed full-bridge converter as the PFC preregulator, and a buck-boost converter as the voltage regulator. This paper addresses the design of this noncascading PFC power supply and in particular the relationships between the gained efficiency, the transient response and the size of the energy storage. Experimental results obtained from a 1 kW laboratory prototype are presented.
机译:使用减少冗余功率处理(R²P²)原理,单相功率因数校正(PFC)电源可以通过使用非级联结构来实现更高的总体效率,该级联结构涉及较少的重复处理输入功率。本文研究基于R²P²原理的单相非级联PFC电源。该电路采用电流馈送全桥转换器作为PFC预调节器,并采用降压-升压转换器作为电压调节器。本文讨论了这种非级联PFC电源的设计,尤其是获得的效率,瞬态响应和储能器尺寸之间的关系。介绍了从1 kW实验室原型获得的实验结果。

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