Performance of LED-ID System for Home Networking Applicaion

홈 네트워킹을 위한 LED-ID 시스템 성능분석

  • Received : 2010.05.06
  • Accepted : 2010.08.11
  • Published : 2010.08.31

Abstract

We propose a Z-HBT line coding for a LED-ID system. Z-HBT line coding is defined as follows. First, we apply half bit transition to one bit. Second, we decode encoded bits using difference of bit transition level in one bit duration. As a result, we obtain advantages about synchronization problem and noise effect mitigation at the receiver. We set up outdoor the LED-ID simulation environment. At simulation results, we show 2-3dB gain as compared with existing line coding schemes. The results of the paper can be applied to design and implementation of LED-ID systems for indoor wireless multimedia services.

본 논문은 가시광 통신(Visible Light Communication)시스템에서 고속 데이터 통신을 위한 line coding 기술 동향을 연구하였다. 가시광 통신(Visible Light Communication)기술은 LED를 사용하는 기기에서 나오는 가시광선(RGB)을 이용해서 정보를 전달하는 기술로서 친환경적이고 에너지 절감효과와 유비쿼터스 네트워크 서비스에 응용이 가능하다. 최근에 들어 홈 네트워킹 필요성의 증가와 LEDs (Light Emitting Diode Technologies)의 개선을 통해 가시광 통신 시스템에 관심이 높아지고 있다. 고속의 데이터 전송을 위하고 에러 검출에 효율적인 홈 네트워킹 환경을 위한 LED-ID 시스템 성능분석을 위해 적합한 line coding을 연구하고 NRZ, AMI, 4B5B, HDB3 line coding을 이용하여 홈 네트워킹 LED-ID 모델에 적용하고 LOS환경에서의 성능 비교를 하였다.

Keywords

References

  1. Jin Young Kim, LED Visible Light Communication System, Hongreung Science Publisher, Seoul, Korea, 2009
  2. J.M. Khan and J.R. Barry, "Wireless infrared communications", in Proc. of IEEE, vol.85, no.2, 1997, pp.265-298. https://doi.org/10.1109/5.554222
  3. T. Komine and M. Nakagawa "Fundamental analysis for visible-light communication system using LED lights", IEEE Trans. Consumer Electron., vol.50, no.1, Feb. 2004, pp.100-107. https://doi.org/10.1109/TCE.2004.1277847
  4. J. Grubor, J. O. Gaete, J. Waleski, S. Randel, and K. Langer, "High-speed wireless indoor communication via visible light", ITGBachbericht, 2007, pp.203-208.
  5. Y. Tanaka, T. Komine, S. Haruyama, and M. Nakagawa, "Indoor visible communication utilizing plural white LEDs as ligthing", inProc. of 12th IEEE Int. Sympo. PIMRC, vol.2, Sept.2001, pp.81-85.
  6. W. A. Krzymien, "Transmission performance analysis of a new class of line codes for optical fiber systems", IEEE Trans. Commun., vol.37, no.4, 1989, pp.402-404. https://doi.org/10.1109/26.20124
  7. J. G. Proakis, Digital Communication, 4thed., Mc-GrawHill, NewYork, 2001.
  8. F. R. Gfeller and U. H. Bapst, "Wireless in-house data communication via diffuse infrared radiation", in Proc. of IEEE, vol.67, no.11, Nov. 1979, pp. 1474-1486. https://doi.org/10.1109/PROC.1979.11508
  9. J. R. Barry, J. M. Kahn, W. J. Krause, E. A. Lee, and D. G. Messerschmitt, "Simulation of multipath impulse response for indoor wireless optical channels", IEEE J.Select. AreasCommun., vol.11, no.3, Apr.1993, pp.367-380. https://doi.org/10.1109/49.219552