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Power quality improvement using buck-boost converter for fluorescent lighting

机译:使用降压-升压转换器改善荧光灯的电能质量

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This paper covers the design, analysis and simulation of power factor regulated and low crest factor based electronic ballast for a compact fluorescent lamp (CFL). The proposed electronic ballast is the combination of a buck-boost AC-DC converter as a power factor regulator (PFR) operating in the continuous conduction mode (CCM) and a half bridge series resonant inverter (HBSRI), which is used for converting a constant dc link voltage into high frequency AC voltage to drive the fluorescent lamp. The design, modeling and simulation of this topology are performed in MATLAB-Simulink for an 18W, 220V, 50Hz compact fluorescent lamp. With the utilization of proper commutation techniques like zero voltage switching (ZVS), the switching losses are reduced at high operating frequency of 60 kHz. The power quality indices such as displacement power factor (DPF), distortion factor (DF), total harmonic distortion of AC mains current (THDi), power factor (PF) and crest factor (CF) are evaluated for proposed electronic ballast, which is in the confirmation with IEC-61000-3-2 class C requirements.
机译:本文涵盖了紧凑型荧光灯(CFL)的功率因数调节和低波峰因数电子镇流器的设计,分析和仿真。拟议的电子镇流器是在连续传导模式(CCM)下工作的降压-升压型AC-DC转换器作为功率因数调节器(PFR)和半桥串联谐振逆变器(HBSRI)的组合,用于转换将恒定的直流链路电压转换为高频交流电压以驱动荧光灯。该拓扑的设计,建模和仿真是在MATLAB-Simulink中针对18W,220V,50Hz紧凑型荧光灯进行的。利用诸如零电压开关(ZVS)之类的适当换向技术,可以在60 kHz的高工作频率下降低开关损耗。对于拟议的电子镇流器,评估了诸如位移功率因数(DPF),失真因数(DF),交流市电电流的总谐波失真(THDi),功率因数(PF)和波峰因数(CF)等电能质量指标。在确认符合IEC-61000-3-2 C类要求的情况下。

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