Transmission Characteristics of Indoor Infrared Diffuse Links Employing Three-Beam Optical Transmitters and Non-Imaging Receivers

  • Wang, Zan (Department of Electrical Engineering, Chonbuk National University) ;
  • Pan, Jae-Kyung (Department of Electrical Engineering, Chonbuk National University)
  • 발행 : 2008.12.31

초록

Diffuse wireless optical communication offers more robust optical links in terms of coverage and shadowing than line-of-sight links. However, traditional diffuse wireless infrared (IR) transceiver systems are more susceptible to multi-path distortion and great power decrease, which results in limiting high-speed performance. Multi-beam is an effective technique to compensate for multi-path distortion in a wireless infrared environment. The goal of this paper is to analyze the transmission characteristics by replacing traditional diffuse system (TDS) which contains single wide angle transmitter and single element receiver by system consisting of three-beam transmitter and non-imaging receiver (TNS) attached with compound parabolic concentrator (CPC). In the simulation, we use the recursive model developed by Barry and Kahn and build the scenario based on 10 different cases which have been listed in Table 1. Moreover, we also check the reliability of the TNS diffuse link channel by BER test on the basis of different receiver positions and room sizes. The simulation results not only show the basic transmission characteristics of TNS diffuse link, but also are references to design more efficient and reliable indoor infrared transmission systems.

키워드

참고문헌

  1. M. J. McCullagh and D. R. Wisely, '155Mbit/s optical wireless link using a bootstrapped silicon APD receiver,' Electronics Letters, Vol.30, No.5, pp.430-432, Mar. 1994 https://doi.org/10.1049/el:19940308
  2. Chaturi Singh, Joseph John, Y. N. Singh, and K. K. Tripathi, 'Design Aspects of High-Performance Indoor Optical Wireless Transceivers,' ICPWC IEEE, pp.14-18, Jan. 2001
  3. A. Mahdy and J. Deogun, 'Wireless Optical Communications: A Survey,' IEEE WCNC, pp. 2399-2404, Mar. 2004
  4. Chuan Peng, Zan Wang, Ji Do Kim, and Jae Kyung Pan, 'Channel Characteristics of Indoor Wireless Infrared Communication System Due to Different Transceiver Conditions,' Journal of KICS, Vol.33, No.2, pp.198-203, Feb. 2008
  5. Rui T. Valadas, Antonio R. Tavares, and A. M. De Oliveira Duarte, 'Angle Diversity to Combat the Ambient Noise in Indoor Optical Wireless Communication Systems,' International Journal of Wireless Information Networks, Vol.4, No.4, 1997
  6. J. Barry, Wireless Infrared Communications, Kluwer Academic Publishers, 1994
  7. W. Welford and R. Winstion, High Collection Nonimaging Optics, New York: Academic, 1989
  8. K. -P. Ho and J. M Kahn, 'Compound Parabolic Concentrators for Narrow-band Wireless Infrared Receivers,' Opt. Eng., Vol.34, pp.1385-1395, May 1995 https://doi.org/10.1117/12.201664