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A High-Power-Factor Single-Stage Single-Switch Electronic Ballast for Compact Fluorescent Lamps

机译:用于紧凑型荧光灯的高功率因数单级单开关电子镇流器

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摘要

A very high power factor electronic ballast that uses a single switch in the power circuit is proposed in this paper for compact fluorescent lamps (CFLs). The proposed power circuit is designed by integrating a SEPIC power factor corrector with a novel single-switch current-fed resonant inverter. The advantage of this single-switch electronic ballast is that it greatly simplifies the gate-drive circuit design due to the elimination of isolation devices that are otherwise required in the conventional half-bridge totem pole configuration. This topology features a reduction of at least two switches in the power stage compared to conventional two-stage approach for high-power-factor electronic ballasts. In addition, the proposed circuit is also able to achieve close-to-unity power factor by operating the integrated SEPIC power factor corrector in discontinuous conduction mode. The conduction loss of the switch in the proposed circuit is also significantly reduced compared to the conventional class-E single-switch resonant inverter. Experimental results are provided to justify all the theoretical analysis and highlight the features of the proposed circuit on a 13-W CFL.
机译:本文针对紧凑型荧光灯(CFL)提出了一种在功率电路中使用单个开关的功率因数非常高的电子镇流器。拟议的电源电路是通过将SEPIC功率因数校正器与新型单开关电流谐振谐振器集成在一起而设计的。这种单开关电子镇流器的优势在于,由于消除了传统半桥图腾柱配置中否则需要的隔离装置,因此极大地简化了栅极驱动电路的设计。与用于高功率因数电子镇流器的常规两级方法相比,该拓扑的特点是功率级至少减少了两个开关。另外,通过以不连续导通模式操作集成的SEPIC功率因数校正器,所提出的电路还能够实现接近单位的功率因数。与传统的E类单开关谐振逆变器相比,该电路中开关的传导损耗也大大降低。提供的实验结果证明了所有理论分析的正确性,并突出了13W CFL上所提出电路的特性。

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