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Single-stage unity power factor based electronic ballast

机译:基于单级单位功率因数的电子镇流器

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This paper deals with the design, modeling, analysis and implementation of unity power factor (UPF) based electronic ballast for a fluorescent lamp (FL). The proposed electronic ballast uses a boost AC–DC converter as a power factor corrector (PFC) to improve the power quality at the input ac mains. In this singlestage UPF based electronic ballast, boost PFC converter and a half bridge series resonant inverter (HBSRI) share a common power switch. Thus one power switch is reduced as compared to the conventional two-stage approach. The design, modeling, analysis and implementation of this topology were carried out in MATLAB-Simulink environment for a T8 36 W, 220 V, 50 Hz fluorescent lamp. The switching frequency was kept morethan the resonant frequency of the inverter, to ensure the zero voltage switching (ZVS) operation of both power switches. This resulted in reduction of high frequency switching losses. The power quality parameters such as displacement power factor (DPF), distortion factor (DF), power factor (PF), crest factor (CF) and total harmonicdistortion of ac mains current (THDi) were evaluated to analyze the performance of proposed electronic ballast. Test results on a developed prototype of PFC electronic ballast were included to validate the design and simulated results.
机译:本文涉及基于统一功率因数(UPF)的荧光灯(FL)电子镇流器的设计,建模,分析和实现。建议的电子镇流器使用升压AC-DC转换器作为功率因数校正器(PFC),以改善输入交流电源的电能质量。在基于单级UPF的电子镇流器中,升压PFC转换器和半桥串联谐振逆变器(HBSRI)共享一个公共电源开关。因此,与传统的两阶段方法相比,减少了一个电源开关。该拓扑的设计,建模,分析和实现是在MATLAB-Simulink环境中针对T8 36 W,220 V,50 Hz荧光灯进行的。保持开关频率超过逆变器的谐振频率,以确保两个电源开关的零电压开关(ZVS)操作。这导致高频开关损耗的减小。评估了诸如位移功率因数(DPF),失真因数(DF),功率因数(PF),波峰因数(CF)和交流电源电流的总谐波失真(THDi)等电能质量参数,以分析所建议的电子镇流器的性能。包括在已开发的PFC电子镇流器原型上的测试结果,以验证设计和仿真结果。

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