• DocumentCode
    1520968
  • Title

    Eigen-Based Transceivers for the MIMO Broadcast Channel With Semi-Orthogonal User Selection

  • Author

    Sun, Liang ; McKay, Matthew R.

  • Author_Institution
    Electr. & Comput. Eng. Dept., Hong Kong Univ. of Sci. & Technol., Hong Kong, China
  • Volume
    58
  • Issue
    10
  • fYear
    2010
  • Firstpage
    5246
  • Lastpage
    5261
  • Abstract
    This paper studies the sum rate performance of two low complexity eigenmode-based transmission techniques for the MIMO broadcast channel, employing greedy semi-orthogonal user selection (SUS). The first approach, termed ZFDPC-SUS, is based on zero-forcing dirty paper coding; the second approach, termed ZFBF-SUS, is based on zero-forcing beamforming. We first employ new analytical methods to prove that as the number of users K grows large, the ZFDPC-SUS approach can achieve the optimal sum rate scaling of the MIMO broadcast channel. We also prove that the average sum rates of both techniques converge to the average sum capacity of the MIMO broadcast channel for large K. In addition to the asymptotic analysis, we investigate the sum rates achieved by ZFDPC-SUS and ZFBF-SUS for finite K , and show that ZFDPC-SUS has significant performance advantages. Our results also provide key insights into the benefit of multiple receive antennas, and the effect of the SUS algorithm. In particular, we show that whilst multiple receive antennas only improves the asymptotic sum rate scaling via the second-order behavior of the multi-user diversity gain; for finite K, the benefit can be very significant. We also show the interesting result that the semi-orthogonality constraint imposed by SUS, whilst facilitating a very low complexity user selection procedure, asymptotically does not reduce the multi-user diversity gain in either first ( K) or second-order (K) terms.
  • Keywords
    MIMO communication; array signal processing; broadcast channels; diversity reception; eigenvalues and eigenfunctions; encoding; multiuser channels; receiving antennas; transceivers; MIMO broadcast channel; ZFBF-SUS; ZFDPC-SUS; asymptotic analysis; asymptotic sum rate scaling; average sum capacity; complexity user selection procedure; eigen-based transceivers; greedy semiorthogonal user selection; low complexity eigenmode-based transmission techniques; multiple receive antennas; multiuser diversity gain; optimal sum rate scaling; semiorthogonality constraint; sum rate performance; zero-forcing beamforming; zero-forcing dirty paper coding; Array signal processing; Broadcasting; Covariance matrix; Diversity methods; MIMO; Permission; Receiving antennas; Sun; Transceivers; Transmitting antennas; Broadcast channel; MIMO systems; QR decomposition; Wishart matrix; dirty-paper coding; zero-forcing beamforming (ZFBF);
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2010.2053709
  • Filename
    5491126