DOI QR코드

DOI QR Code

주파수 변조 기법을 이용하여 음향공명 현상을 제거한 1[kW] 메탈 핼라이드 램프용 전자식 안정기 개발

A Study on Electronic Ballast for 1[kW] Metal-Halide Lamp Developed by Eliminating Acoustic Resonance using Frequency Modulation Method

  • 박종연 (강원대학교 전기전자 정보통신공학부) ;
  • 이봉진 (강원대학교 대학원 전기전자공학과)
  • 발행 : 2008.02.29

초록

본 논문은 주파수 변조 기법을 도입하여 메탈 핼라이드 램프의 음향공명 현상을 제거한 수동 PFC 구조의 전자식 안정기를 설계 및 구현하였다. 제안하는 안정기는 EMI 필터, 수동 PFC 회로, 풀 브리지 인버터 및 LC 공진 타입의 점화기, 그리고 음향공명 현상을 제거하기 위한 회로로 구성되었다. 주파수 변조 기법의 도입으로 단일 주파수 구동시 문제점이였던 램프의 수명 경과에 따른 음향공명 대역이 변화와 동일한 크기의 방전관이라도 램프 제조 사마다 아크 튜브 내부에 봉입되는 물질과 압력차에 의한 음향공명 대역의 차이를 해결하였다. 개발된 prototype 1[kW] 메탈 핼라이드 램프용 전자식 안정기의 광변환 효율, 입력 PF, 입력 전류의 THD, 그리고 전력 변환 효율을 측정함으로써 성능을 입증하였다.

This paper presents the design and imelementation of an electronic ballast with a passive PFC structure from which acoustic resonance of the metal halide lamp was removed by introducing the frequency modulation(FM) method. The proposed ballast consists of an EMI filter, passive PFC circuit full-bridge inverter, LC resonance type igniter and a circuit for removing acoustic resonance. The FM method solved two problems associated with single frequency driving: variation of the acoustic resonance range according to lamp aging and the acoustic resonance range discrepancy caused by different materials sealed inside the arc tube and their pressures for arc tubes of identical sizes from different manufacturers. Performance of the prototype developed for this study of the electronic ballast for 1[kW] metal halide lamp was verified by evaluating its optical conversion efficiency, input PF, input current THD and power conversion efficiency.

키워드

참고문헌

  1. Yan Jiang, Miaosen Shen, Hua Li, Zhaoming Qian, 'An Adaptive Acoustic Resonance Free Electronic Ballast for HID Lamps', IEEE IAS Annual Meeting, Vol.2, pp.1020 - 1024, Oct. 2003
  2. Chicn-Ming Huang, Tsorng-Juu Liang, 'A Novel Constant Power Control Circuit for HID Electronic Ballast' IEEE Transaction on, Vol.22,(5), pp. 1573-1582, Sept. 2007 https://doi.org/10.1109/TPEL.2007.904159
  3. T.J.Liang, C.A.Cheng, and W.S.Lai, 'A novel two-stage high-power-factor low-frequency HID electronic ballast', in Proc. IEEE IECON'03, pp. 2607-2612. 2003
  4. M.Shen, Z.Qian and F.Z.Peng, 'Design of a two-stage low-frequency square-wave electronic ballast for HID lamps', IEEE Trans. Ind. Appl., vol.39, no.2, pp.424-430, Mar./Apr. 2003 https://doi.org/10.1109/TIA.2003.808921
  5. Gulko, M., and Ben-Yaakov, S. 'A MHz electronic ballast for automotive-type HID lamps', Proc. IEEE Conf. PESC, pp. 39-45, 1997
  6. .Laskai, L., Enjeti, P., and Pitel, I.J. 'White Noise modulation of high frequency high-intensity discharge lamps ballast', IEEE Tran, Ind. Appl., 34, pp. 597-604. 1998 https://doi.org/10.1109/28.673731
  7. C.-A.Cheng, T.-J.Liang, R.-L.Lin and J.-F.Chen, 'Design and implementation of frequency-modulated electronic ballast for metal-halide lamps', IEE proc.-Electr. Power Appl., Vol.153, No.5, Sep,2006
  8. C.-A.Cheng, T.-J.Liang ,R.-L.Lin and J.-F.Chen, 'Single -stage high-power-factor electronic ballast with complex frequency modulation for HID lamps', IET Elctr. Power Appl., Vol.1,(3), pp. 377-386. May, 2007 https://doi.org/10.1049/iet-epa:20060167
  9. H.L.Witting, 'Acoustic Resonance in Cylindrical high pressure ARC Discharge', J'Apple Phy. 49(5), May, 1978 https://doi.org/10.1063/1.324769
  10. W.M.Lin, J.Sebastian, A.Fernandez, M.M.Hernando, P.J.Villegas, 'Design of the Basic Rectifier with LC Filter to Comply with the New Edition of the IEC1000-3-2 Current Harmonics-Limit Specifications(Edition 2.0)', in Proc. IEEE APEC'02, Vol.2, pp. 10-14. Mar, 2002
  11. Mangesh Borage, Sunil Tiwari and S.Kotaiah, 'Passive Techniques for Compliance of Single-phase Rectifiers with IEC 1000-3-2 Norms', Proceedings of INCEMIC'03, pp.1-8. Dec, 2003
  12. Rong Guo, Zhaoming Qian, 'A Novel Low-cost High-reliability Igniter for Metal Halide Lamps', IEEE Appl, Power Elect. Conf. APEC'06, pp.19-23. Mar, 2006
  13. Mario Ponce, Efren Flores, Rene Osorio, 'Analysis and Design of Igniters for HID Lamps Fed with Square Waveforms', IEEE Power Elect. Specialists Conf. PESC'04, Vol.1, pp. 20-25. June, 2004
  14. Jianqiang Wang, Dianguo Xu, Hua Yang, 'Low-Frequency Sine Wave Modulation of 250W High-Frequency Metal Halide Lamp ballasts', IEEE Appl. Power Elect. APEC'04, Vol.2, pp. 1003-1007. 2004
  15. Chun-An Cheng, Tsorng-Juu Liang, Chia-Ming Chuang, Jiann-Fuh Chen, 'A High Power Factor Electronic Ballast of Projector Lamps with Variable Frequency Control', IEEE Power Elect. Specialists PESC'02, Vol.1, pp. 23 - 27. June, 2002
  16. John Parry, 'Variable Frequency Drive using IR215x Self-Oscillating IC's', International Rectifier, Design Tip 98-1
  17. Supraim Basu, M.H.J.Bollen, Tore M.Undeland, 'PFC Strategies in light of EN 61000-3-2' Paper Identification Number A123656
  18. C.Y.Park, B.J.Lee, K.N.Kim, 'Passive PFC Circuit Design for the High Power MHL Electronic Ballast', KIEE Proceeding of the 38th Summer Conf., CD pp. 1996-199 7. 2007
  19. W.M.Lin, M.M.Hernando, A.Fernandez, J.Sebastian P.J.Ville gas, 'A New Topology for Passive PFC Circuit Design to Allow AC-to-DC Converters to Comply with the New Version of IEC1000-3-2 Regulation', IEEE Power Elect. Specialists Conf. PESC'02, Vol.4, pp. 23-27. June, 2002