A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability
A novel single-switch single-stage high power factor LED driver is proposed by integrating a flyback converter, a buck–boost converter and a current balance circuit. Only an active switch and a corresponding control circuit are used. The LED power can be adjusted by the control scheme of pulse–width...
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2021-06-01
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doaj-654ef62c05594736beab36abe919ed6a2021-06-30T23:10:57ZengMDPI AGElectronics2079-92922021-06-01101340134010.3390/electronics10111340A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing CapabilityYih-Her Yan0Hung-Liang Cheng1Chun-An Cheng2Yong-Nong Chang3Zong-Xun Wu4Department of Electrical Engineering, National Formosa University, Hu-Wei, Yunlin 63201, TaiwanDepartment of Electrical Engineering, I-Shou University, Kaohsiung 84001, TaiwanDepartment of Electrical Engineering, I-Shou University, Kaohsiung 84001, TaiwanDepartment of Electrical Engineering, National Formosa University, Hu-Wei, Yunlin 63201, TaiwanDepartment of Electrical Engineering, I-Shou University, Kaohsiung 84001, TaiwanA novel single-switch single-stage high power factor LED driver is proposed by integrating a flyback converter, a buck–boost converter and a current balance circuit. Only an active switch and a corresponding control circuit are used. The LED power can be adjusted by the control scheme of pulse–width modulation (PWM). The flyback converter performs the function of power factor correction (PFC), which is operated at discontinuous-current mode (DCM) to achieve unity power factor and low total current harmonic distortion (THDi). The buck–boost converter regulates the dc-link voltage to obtain smooth dc voltage for the LED. The current–balance circuit applies the principle of ampere-second balance of capacitors to obtain equal current in each LED string. The steady-state analyses for different operation modes is provided, and the mathematical equations for designing component parameters are conducted. Finally, a 90-W prototype circuit with three LED strings was built and tested. Experimental results show that the current in each LED string is indeed consistent. High power factor and low THDi can be achieved. LED power is regulated from 100% to 25% rated power. Satisfactory performance has proved the feasibility of this circuit.https://www.mdpi.com/2079-9292/10/11/1340current balanceflyback converterlight-emitting diode (LED)power factorsingle-stage |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Yih-Her Yan Hung-Liang Cheng Chun-An Cheng Yong-Nong Chang Zong-Xun Wu |
spellingShingle |
Yih-Her Yan Hung-Liang Cheng Chun-An Cheng Yong-Nong Chang Zong-Xun Wu A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability Electronics current balance flyback converter light-emitting diode (LED) power factor single-stage |
author_facet |
Yih-Her Yan Hung-Liang Cheng Chun-An Cheng Yong-Nong Chang Zong-Xun Wu |
author_sort |
Yih-Her Yan |
title |
A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability |
title_short |
A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability |
title_full |
A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability |
title_fullStr |
A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability |
title_full_unstemmed |
A Novel Single-Switch Single-Stage LED Driver with Power Factor Correction and Current Balancing Capability |
title_sort |
novel single-switch single-stage led driver with power factor correction and current balancing capability |
publisher |
MDPI AG |
series |
Electronics |
issn |
2079-9292 |
publishDate |
2021-06-01 |
description |
A novel single-switch single-stage high power factor LED driver is proposed by integrating a flyback converter, a buck–boost converter and a current balance circuit. Only an active switch and a corresponding control circuit are used. The LED power can be adjusted by the control scheme of pulse–width modulation (PWM). The flyback converter performs the function of power factor correction (PFC), which is operated at discontinuous-current mode (DCM) to achieve unity power factor and low total current harmonic distortion (THDi). The buck–boost converter regulates the dc-link voltage to obtain smooth dc voltage for the LED. The current–balance circuit applies the principle of ampere-second balance of capacitors to obtain equal current in each LED string. The steady-state analyses for different operation modes is provided, and the mathematical equations for designing component parameters are conducted. Finally, a 90-W prototype circuit with three LED strings was built and tested. Experimental results show that the current in each LED string is indeed consistent. High power factor and low THDi can be achieved. LED power is regulated from 100% to 25% rated power. Satisfactory performance has proved the feasibility of this circuit. |
topic |
current balance flyback converter light-emitting diode (LED) power factor single-stage |
url |
https://www.mdpi.com/2079-9292/10/11/1340 |
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