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      KCI등재후보

      A Fully Digital Controlled Fly-back Single Stage Power Supply Unit for the Wireless Dimming System of LED Lightings

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      https://www.riss.kr/link?id=A106493376

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      다국어 초록 (Multilingual Abstract)

      This paper presents a fully digital controlled power supply unit for the wireless controlled dimmable LED lighting system. The proposed power supply designed using a fly-back converter, which is directly controlled by a microprocessor. Although the pr...

      This paper presents a fully digital controlled power supply unit for the wireless controlled dimmable LED lighting system. The proposed power supply designed using a fly-back converter, which is directly controlled by a microprocessor. Although the proposed circuit does not sense the AC input current and has not AC input voltage feed-forward, it can achieve a high power factor. The proposed power supply directly regulates the output power for LED loads using the PWM and PFM control of the fly-back converter without additional regulator. For a wireless remote control function, the Zigbee modem is equipped in the proposed power supply. A prototype set-up has been built and tested. Through the experiment with a prototype set-up, the usefulness of the proposed power supply is verified.

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      참고문헌 (Reference)

      1 P. Fang, "Single-Stage LED Driver Achieves Electrolytic Capacitor-Less and Flicker-Free Operation With Unidirectional Current Compensator" 34 (34): 6760-6776, 2019

      2 W. Lin, "Research on a single-stage Flyback/boost LED driver with lower output ripple" 1-5, 2016

      3 P. Somarowthu, "Novel single stage power factor corrected LED driver topology for space constrained applications of aircraft exterior lighting system" 1-8, 2018

      4 X. Qu, "Isolated PFC Pre-Regulator for LED Lamps" 1980-1987, 2008

      5 S. Lin, "Implementation of a single-stage forward-flyback driver with high efficiency and high power factor for LED streetlight" 1078-1083, 2017

      6 Z. Ye, "Design considerations of a high power factor SEPIC converter for high brightness white LED lighting applications" 2657-2663, 2008

      7 J. Huang, "Analysis and Design of a Digital-Controlled Single-Stage Series-Type LED Driver With Independent N-Channel Output Currents" 34 (34): 9067-9081, 2019

      8 Z. Ye, "A topology study of single-phase offline AC/DC converters for high brightness white LED lighting with power factor pre-regulation and brightness dimmable" 1961-1967, 2008

      9 J. Yeon, "A single stage flyback power supply unit for LED lighting applications" I-288-I-292, 2009

      10 W. Nie, "A simple method to reduce line current zero-crossing distortion (LCZCD) for single-stage flyback LED driver" 1-3, 2014

      1 P. Fang, "Single-Stage LED Driver Achieves Electrolytic Capacitor-Less and Flicker-Free Operation With Unidirectional Current Compensator" 34 (34): 6760-6776, 2019

      2 W. Lin, "Research on a single-stage Flyback/boost LED driver with lower output ripple" 1-5, 2016

      3 P. Somarowthu, "Novel single stage power factor corrected LED driver topology for space constrained applications of aircraft exterior lighting system" 1-8, 2018

      4 X. Qu, "Isolated PFC Pre-Regulator for LED Lamps" 1980-1987, 2008

      5 S. Lin, "Implementation of a single-stage forward-flyback driver with high efficiency and high power factor for LED streetlight" 1078-1083, 2017

      6 Z. Ye, "Design considerations of a high power factor SEPIC converter for high brightness white LED lighting applications" 2657-2663, 2008

      7 J. Huang, "Analysis and Design of a Digital-Controlled Single-Stage Series-Type LED Driver With Independent N-Channel Output Currents" 34 (34): 9067-9081, 2019

      8 Z. Ye, "A topology study of single-phase offline AC/DC converters for high brightness white LED lighting with power factor pre-regulation and brightness dimmable" 1961-1967, 2008

      9 J. Yeon, "A single stage flyback power supply unit for LED lighting applications" I-288-I-292, 2009

      10 W. Nie, "A simple method to reduce line current zero-crossing distortion (LCZCD) for single-stage flyback LED driver" 1-3, 2014

      11 S. Ke, "A novel lower output ripple single-stage flyback LED driver" 97-101, 2015

      12 K. Cho, "A microprocessor based single stage power supply using fly-back converter for LED lightings" 84-87, 2011

      13 S. Zhang, "A high performance primary-sideregulated LED driver based on single-stage SEPIC-flyback converter" 11 : 26-30, 2016

      14 K. Cho, "A fully digitally controlled power supply unit for wireless remote controlled LED lighting systems" 1542-1546, 2012

      15 Y. Wang, "A Single-stage LED Driver based on Resonant Converter with Low-voltage Stress" 2018

      16 Y. Wang, "A Single-Stage LED Driver Based on Flyback and Modified Class-E Resonant Converters With Low-Voltage Stress" 66 (66): 8463-8473, 2019

      17 P. Fang, "A Multiplexing Ripple Cancellation LED Driver With True Single-Stage Power Conversion and Flicker-Free Operation" 34 (34): 10105-10120, 2019

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2021 평가예정 신규평가 신청대상 (신규평가)
      2020-12-01 평가 등재후보 탈락 (계속평가)
      2019-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2018-01-04 학술지명변경 외국어명 : Journar of Advanced Information Technology and Convergence -> Journal of Advanced Information Technology and Convergence KCI등재후보
      2017-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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