A High-Efficiency Single-Stage Isolated Sepic-Flyback Ac-Dc Led Driver
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Date
2023
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Publisher
Mdpi
Abstract
Regulating LED current and voltage is critical to maintaining a constant luminous flux in AC- or DC-powered LED lighting circuits. Today, users require constant current drivers that can provide a wide range of output voltages to drive different numbers of series-connected LED arrays. This work proposes an LED driver by combining an isolated SEPIC converter operating in the continuous conduction mode (CCM) and a modified Vienna rectifier. The proposed LED driver offers a single-switch control structure by adding a Vienna rectifier to the integrated SEPIC-FLYBACK converter. This driver structure provides many advantages over traditional bridge rectifier structures. The prototype circuit was tested in an 18 W continuous current mode (CCM) to verify its feasibility. As a result of the values obtained from both simulation and prototype circuit models, it has been shown to provide many of the following advantages: 95% high efficiency, high reliability, 4% low total harmonic distortion, 97% high power factor, and 70 V low switching voltage. This work meets class C 3-2 and IEC 61000 standards.
Description
Gurcam, Kenan/0000-0001-9051-5953
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Keywords
Led Driver, Isolated Sepic, Vienna Converter, Switching Stress, Total Harmonic Distortion (Thd)
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Q2
Scopus Q
Q2
Source
Volume
12
Issue
24