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차량의 헤드램프 빔 패턴 인식을 위한 헤드램프 검사 시스템 개발

Development of a Headlamp Testing System for Automobile Headlamp Beam Pattern Recognition

  • 김정훈 (울산대학교 자동차선박기술대학원) ;
  • 조지운 (울산대학교 산업경영공학부)
  • Kim, Junghoon (Institute of e-Vehicle Technology, University of Ulsan) ;
  • Cho, Chiwoon (School of Industrial Engineering, University of Ulsan)
  • 투고 : 2013.12.13
  • 심사 : 2014.09.11
  • 발행 : 2014.11.01

초록

"Cut off line" in automotive passing beam has very important safety function because it serves for headlamp aiming. Headlights that are aimed incorrectly will not only perform poorly but also offend oncoming traffic. In addition, an objective definition of cut off line in low beam is necessary, since a requirement for correct aiming of the beams is specified within all the existing regulations. Accordingly, headlight regulations are requirements that automobiles must satisfy in order to be sold in a particular country. In this study, a more advanced recognition method for the cut off lines of the various headlamps commonly used in Europe, North America, and domestic is suggested and a headlamp testing system is developed to adjust the beam to the country-specific regulation. This system uses image processing technology to detect the cut off lines in the beam patterns of halogen headlamps, high-intensity discharge headlamps, and light-emitting diode headlamps as well.

키워드

참고문헌

  1. B. D. Kang, "The Technology Trend of Automobile Headlamps," Auto Journal, KSAE, pp.82-87, 2006.
  2. H. S. Lee, B. D. Kang, H. G. Choi and J. Y. Hwang, "A Study on Optimum Swivel Angle of AFLS Headlamps considering Various Road Curvatures," KSAE Fall Conference Proceedings, pp.1434-1439, 2006.
  3. H. G. Kim, B. D. Kang, H. S. Lee, K. K. Cho and S. J. Hong, "Evaluation of Headlamp Glare with Various Light Sources and Aiming Conditions," KSAE Spring Conference Proceedings, pp.2176-2181, 2007.
  4. S. W. Shin, J. M. Lim, M. K. Hwang and C. W. Yi, "The Trend of Technique and Standardization of LED Headlamp for Automobile," Korea Institute of Lighting Conference Proceedings, pp.145-148, 2008.
  5. K. Rajaraman and M. Kushner, "A Monte Carlo Simulation of Radiation Trapping in Electrodeless Gas Discharge Lamps," Journal of Physics, Vol.37, No.13, pp.1780-1791, 2004.
  6. J. Jonkers, M. Bakker and J. Mulleny, "Absorption Measurements on a Low Pressure, Inductively Coupled, Argon Mercury Discharge for Lighting Purposes: The Gas Temperature and Argon Metastable States Density," Journal of Physics, Vol.30, No.13, pp.1928-1933, 1997.
  7. C. Dubosc, "Compared Future Styling Trends for Lighting Systems on Major Markets," 6th International Symposium on Automotive Lighting, Vol.16, pp.181-187, 2005.
  8. M. Scholl, "Global Headlamp Application with Dual Filament Bulbs," 6th International Symposium on Automotive Lighting, Vol.18, pp.618-630, 2005.