Iterative V-BLAST Decoding Algorithm in the AMC System with a STD Scheme

  • Lee, Keun-Hong (Dept. of Computer Media, Hanyeong College) ;
  • Ryoo, Sang-Jin (Dept. of Computer Media, Hanyeong College) ;
  • Kim, Seo-Gyun (Institute for information technology advancement) ;
  • Hwang, In-Tae (Chonnam National University, School of Electronics & Computer Engineering)
  • Published : 2008.03.31

Abstract

In this paper, we propose and analyze the AMC (Adaptive Modulation and Coding) system with efficient turbo coded V-BLAST (Vertical-Bell-lab Layered Space-Time) technique. The proposed algorithm adopts extrinsic information from a MAP (Maximum A Posteriori) decoder with iterative decoding as a priori probability in two decoding procedures of V-BLAST scheme; the ordering and the slicing. Also, we consider the AMC system using the conventional turbo coded V-BLAST technique that simply combines the V-BLAST scheme with the turbo coding scheme. And we compare the proposed decoding algorithm to a conventional V-BLAST decoding algorithm and a ML (Maximum Likelihood) decoding algorithm. In addition, we apply a STD (Selection Transmit Diversity) scheme to the systems for better performance improvement. Results indicate that the proposed systems achieve better throughput performance than the conventional systems over the entire SNR range. In terms of transmission rate performance, the suggested system is close in proximity to the conventional system using the ML decoding algorithm.

Keywords

References

  1. S. M. Alamouti, "A Simple Diversity Technique for Wireless Communications," IEEE Journal on select areas in communications, Vol.16, No.8, pp.1451-1458, October 1998 https://doi.org/10.1109/49.730453
  2. G..J. Foschini, "Layered Space-Time Architecture for Wireless Communication in a Fading Environment When Using Multi-Element Antennas," Bell Labs Technical Journal, Autumn 1996
  3. A. J. Goldsmith, and S.G. Chua, "Adaptive Coded Modulation for Fading Channels," IEEE Trans. on Comm,, Vol.46, No.5, pp.595-602, May 1998 https://doi.org/10.1109/26.668727
  4. A. Bhargave; R.J.P. de Figueiredo, T. Eltoft, "A Detection Algorithm for the V-BLAST System," GLOBECOM '01. IEEE, Vol.1 , pp. 494-498, November 2001
  5. S. Benedetto and G. Montorsi, "Unveling Turbo Codes: some results on parallel concatenated coding schemes," IEEE Trans. on Inform. Theory, vol. 42, pp. 409-429, March 1996 https://doi.org/10.1109/18.485713
  6. S. Bennedetto, D. Divsalar, G. Montorsi and F. Pollara, "A soft-input soft-output maximum a posteriori(MAP) module to decode parallel and serial concatenated codes," JPL, TDA Progress Rep. 42-126, August 1996
  7. M. Sandell, "Analytical analysis of transmit diversity in WCDMA on fading multipath channels," PIMRC99 September, Vol.2, pp.946-950, September 1999
  8. Z. W. Catherine, H. Sweatman, J. S. Thompson, B. Mulgrew, and P. M. Grant, "Comparison of Detection Algorithm including BLAST for Wireless Communication using Multiple Antennas," PIMRC'00, Vol.1, pp.698-703, 2000
  9. P. W. Wolniansky, G. J. Foschini, G. D. Golden, and R. A. Valenzuela, "V-BLAST : An Architecture for Realizing Very High Data Rates Over the Rich-Scattering Wireless Channel," ISSSE'98, pp.295-300, 1998
  10. Bertrand M.. Hochwald and Stephan ten Brink, "Achieving Near-Capacity on a Multiple-Antenna Channel," IEEE Trans. Commun. Vol.51, no.3 pp.389-399, March 2003 https://doi.org/10.1109/TCOMM.2003.809789
  11. H. Vikalo, B. Hassibi, and T. Kailath, "Iterative Decoding for MIMO Channels via Modified Sphere Decoding," IEEE Trans. Commun. Vol.3, no.6 pp.2299-2311, November 2004 https://doi.org/10.1109/TWC.2004.837271
  12. Stephan Baro, Joachim Hagenauer, and Melanie Witzke, "Iterative Detection of MIMO Transmission Using a List-Squential (LISS) Detector," in Proc. ICC'03, Vol.4, pp.2653-2657, May 2003
  13. Wanlun Zhao and Georgios B. Giannakis, "Sphere Decoding Algorithms With Improved Radius Search," IEEE Trans. Commun. Vol.53, no.7 pp.1104-1109, July 2005 https://doi.org/10.1109/TCOMM.2005.851590
  14. 3GPP2 C.P9010, "Draft baseline text for the physical layer portion of the 1X EV specification,", pp. 9-78, August 2000
  15. R.W. Heath, Jr.; S. Sandhu, Paulraj, "Antenna selection for spatial multiplexing systems with linear receivers" IEEE Comm. Letters, Vol.5 Issue: 4, pp.142 -144, April 2001. https://doi.org/10.1109/4234.917094
  16. I. T. Hwang, J. Y. Son, S. K. Hahn, M. G. Kang, Y. H. You, and C. E. Kang, ''Improvement of AMC-MIMO multiplexing systems with selection transmit diversity techniques," IEICE Trans. on Commun., vol.E87-B, no.6, pp.1684-1687, June 2004
  17. Hozun SUNG, Jee Woong KANG, and Kwang Bok Leel, "A Simplified Maximum Likelihood Detection for MIMO Systems," IEICE Trans. Commun. volE89-B, no.8 pp.2241-2244, August 2006 https://doi.org/10.1093/ietcom/e89-b.8.2241