A comparative study of a family of charge pump power factor correction electronic ballasts

F. Tao, J. Qian, F. Lee, N. Onishi
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引用次数: 14

Abstract

The charge pump power factor correction (CPPFC) electronic ballast circuit has become an attractive topological family for ballasting fluorescent lamps because it employs a charging capacitor instead of bulky inductor to implement the power factor correction (PFC). Several topologies have been previously proposed. Based on the different mechanism to achieve PFC, three types, namely, voltage source type CPPFC (VS-CPPFC), current source type CPPFC (CS-CPPFC), and combined voltage source and current source type CPPFC (VSCS-CPPFC) electronic ballast can be classified. These three types of CPPFC electronic ballast have different electrical characteristics, such as different start-up bus voltages, etc. Mathematical analysis is given in this paper based on the study of six typical CPPFC electronic ballast circuits. Then a comparison among these circuits in terms of power factor, DC bus voltage stress at preheat, start-up, and steady state modes, current stress at steady state, and lamp current crest factor is presented. The experimental results are provided for verification.
一类电荷泵功率因数校正电子镇流器的比较研究
电荷泵功率因数校正(CPPFC)电子镇流器电路由于采用充电电容代替笨重的电感来实现功率因数校正(PFC)而成为荧光灯镇流器中一个有吸引力的拓扑家族。以前已经提出了几种拓扑结构。根据PFC实现机制的不同,可将电压源型CPPFC (VS-CPPFC)、电流源型CPPFC (CS-CPPFC)和电压源和电流源组合型CPPFC (VSCS-CPPFC)电子镇流器分为三种类型。这三种类型的CPPFC电子镇流器具有不同的电气特性,如不同的启动母线电压等。本文在对六种典型的CPPFC电子镇流器电路进行研究的基础上,进行了数学分析。然后从功率因数、直流母线在预热、启动和稳态模式下的电压应力、稳态时的电流应力和灯电流波峰因数等方面对这些电路进行了比较。给出了实验结果以供验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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