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A Novel Flyback-Based Input PFC Stage for Electronic Ballasts in Lighting Applications

机译:一种新颖的基于反激的输入PFC舞台,用于照明应用中的电子镇流器

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摘要

This paper proposes an electronic driver for public lighting systems. The input stage is based on the integration of two flyback converters with different polarities, in order to avoid the use of the input diode bridge rectifying stage. The output stage is a boost converter with an output current control. The proposed circuit is introduced and analyzed, and a design example for a 50-W light-emitting diode lamp is presented. The most relevant simulation and experimental results are also shown, in order to validate the idea. A comparison in terms of efficiency for the input stage is carried out between the proposed topology and the conventional flyback converter, showing an efficiency enhancement in the proposed converter. However, the most important advantage of the proposed converter is outlined in the final part of this paper. This advantage comes from the avoidance of the input diode bridge, thus enabling the bidirectional power flow at the input stage. Therefore, the topology can be used to deliver energy into the power grid. In recent lighting applications, the use of micro renewable generators in lighting points has made the use of special electronics to handle the energy flows in the ballast necessary. The present topology is an alternative to standard bidirectional input stages.
机译:本文提出了一种用于公共照明系统的电子驱动器。输入级基于两个极性不同的反激式转换器的集成,以避免使用输入二极管桥式整流级。输出级是具有输出电流控制的升压转换器。介绍并分析了所提出的电路,并给出了一个50W发光二极管灯的设计实例。还显示了最相关的仿真和实验结果,以验证该想法。在提出的拓扑结构和常规反激式转换器之间进行了输入级效率方面的比较,显示了提出的转换器的效率得到了提高。但是,本文最后一部分概述了拟议转换器的最重要优点。该优势来自避免输入二极管电桥,从而在输入级实现双向功率流。因此,拓扑可用于将能量输送到电网中。在最近的照明应用中,在照明点使用微型可再生发电机已使使用特殊的电子设备来处理镇流器中的能量流成为必要。本拓扑是标准双向输入级的替代方案。

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