Adaptive MIMO Transmission Method based on the Optimal Combination of Antenna Diversity with Spatial Multiplexing

안테나 다이버시티와 공간 다중화의 조합에 기초한 적응적 MIMO 전송 기법

  • 김대현 (한국과학기술원 전자전산학과 통신신호처리 연구실) ;
  • 김형명 (한국과학기술원 전자전산학과 통신신호처리 연구실)
  • Published : 2007.05.31

Abstract

MIMO transmission systems can have various transmission modes, which result from the various combinations of the antenna diversity with spatial multiplexing. In this paper, we find the optimal mode to maximize the capacity with the BER constraint and the optimal selection (diversity transmission or spatial multiplexing transmission) for transmission of each transmission antenna, if necessary. The computer simulation results show that the proposed scheme has more capacity than the conventional scheme.

MIMO 시스템은 안테나 다이버시티와 공간 다중화의 적절한 조합에 따라 여러 가지 전송모드를 가질 수 있다. 이 논문에서는 비트 오류율에 관한 조건을 만족시키면서 전송용량을 최대화하는 전송모드를 찾고 특정 모드에 대해서는 각 안테나의 전송 기법을 최적화하는 방법을 제안한다. 모의실험을 통해 제안된 기법이 기존 기법에 비해서 전송용량을 향상시키는 것을 보인다.

Keywords

References

  1. S. M. Alamouti, 'A simple Transmit Diversity Technique for Wireless Communications', IEEE Trans. JSAC., Vol. 16, No.8, pp. 1451-1458, Oct. 1998
  2. G. J. Foschini, 'Layered space-time architecture for wireless communication in a fading environment when using multiple antenna,' Vol. 1, No. 2, pp. 41-59, Autumn 1996 https://doi.org/10.1002/bltj.2015
  3. R. W. Heath, A. J. Paulraj, 'Switching Between Multiplexing and Diversity based on constellation distance,' in Proc. Allorton Conf. Communication, Control and Computing, pp. 212-219, Oct. 2000
  4. R. W. Heath, A. J. Paulraj, 'Switching Between Diversity and Multiplexing in MIMO Systems,' IEEE Trans. Communications, Vol. 53, No.6, pp. 962-968, Jun. 2005 https://doi.org/10.1109/TCOMM.2005.849774
  5. C.B. Chae et al., 'Adaptive Spatial Modulation for MIMO-OFDM,' in Proc. of WCNC, Vol. 1, pp. 87 - 92, Mar. 2004
  6. L. Zheng, D. N. C. Tse, 'Diversity and Multiplexing: A Fundamental Tradeoff in Multiple-Antenna Channels,' IEEE Trans. Inform. Theory, Vol. 49, No. 5, pp. 1073-1096, May 2003 https://doi.org/10.1109/TIT.2003.810646
  7. P. Elia, K. R. Kumar, S. A. Pawar, P. V. Kumar, H. -F. Lu, 'Explicit Space-Time Codes Achieving the Diversity–Multiplexing Gain Tradeoff,' IEEE Trans. Inform. Theory, Vol. 52, No. 9, pp. 3869-3884, Sep. 2006 https://doi.org/10.1109/TIT.2006.880037
  8. H. E. Gamal, G. Caire, M. O. Damen, 'Lattice coding and decoding achieve the optimal diversity-multiplexing tradeoff of MIMO channels,' IEEE Trans. Inform. Theory, vol. 50, No. 6, pp. 968-985, Jun. 2004 https://doi.org/10.1109/TIT.2004.828067
  9. R. Narasimhan, 'Finite-SNR Diversity-Multiplexing Tradeoff for Correlated Rayleigh and Rician MIMO Channels,' IEEE Trans. Inform. Theory, Vol. 52, No. 9, pp. 3965- 3979, Sep. 2006 https://doi.org/10.1109/TIT.2006.880057
  10. E. N. Onggosanusi, A. G. Dabak, T. M. Schmidl, 'High Rate Space-time Block Coded Scheme : Performance and Improvement in Correlated Fading Channels', Proc. of IEEE Wireless Communications and Networking Conference, vol. 1, pp. 194-199, Mar. 2002
  11. A.J. Goldsmith and S.G. Chua, 'Variable-Rate Variable-Power M-QAM for Fading Channels', IEEE Trans. Communications, Vol. 45, No. 10, pp. 1218-1230, Oct. 1997 https://doi.org/10.1109/26.634685
  12. X. Qiu, K. Chawla, 'On the Performance of Adaptive Modulation in Cellular Systems', IEEE Trans. Communications, Vol. 47, No. 6, pp. 884-895, Jun. 1999 https://doi.org/10.1109/26.771345
  13. V. Tarokh, H. Jafarkhani, A. R. Calderbank, 'Space–Time Block Codes from Orthogonal Designs', IEEE Trans. Inform. Theory, Vol. 45, No. 5, pp. 1456-1467, Jul. 1999 https://doi.org/10.1109/18.771146
  14. H. Jafarkhani, 'A Quasi-Orthogonal Space-Time Block Code', IEEE Trans. Communications, Vol. 49, No. 1, pp. 1-4, Jan. 2001 https://doi.org/10.1109/26.898239