• DocumentCode
    804607
  • Title

    Linear threaded algebraic space-time constellations

  • Author

    Damen, Mohamed Oussama ; El Gamal, Hesham ; Beaulieu, Norman C.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, Alta., Canada
  • Volume
    49
  • Issue
    10
  • fYear
    2003
  • Firstpage
    2372
  • Lastpage
    2388
  • Abstract
    Space-time (ST) constellations that are linear over the field of complex numbers are considered. Relevant design criteria for these constellations are summarized and some fundamental limits to their achievable performances are established. The fundamental tradeoff between rate and diversity is investigated under different constraints on the peak power, receiver complexity, and rate scaling with the signal-to-noise ratio (SNR). A new family of constellations that achieve optimal or near-optimal performance with respect to the different criteria is presented. The proposed constellations belong to the threaded algebraic ST (TAST) signaling framework, and achieve the optimal minimum squared Euclidean distance and the optimal delay. For systems with one receive antenna, these constellations also achieve the optimal peak-to-average power ratio for quadrature amplitude modulation (QAM) and phase-shift keying (PSK) input constellations, as well as optimal coding gains in certain scenarios. The framework is general for any number of transmit and receive antennas and allows for realizing the optimal tradeoff between rate and diversity under different constraints. Simulation results demonstrate the performance gains offered by the proposed designs in average power and peak power limited systems.
  • Keywords
    antenna arrays; diversity reception; phase shift keying; quadrature amplitude modulation; receiving antennas; telecommunication signalling; transmitting antennas; PSK; QAM; SNR; TAST signaling; complex numbers; diversity; linear threaded algebraic space-time constellations; optimal coding gains; optimal delay; optimal minimum squared Euclidean distance; peak power; peak-to-average power ratio; phase-shift keying; quadrature amplitude modulation; rate; rate scaling; receive antenna; receiver complexity; signal-to-noise ratio; threaded algebraic ST signaling; Constellation diagram; Delay; Euclidean distance; Linearity; Phase shift keying; Quadrature amplitude modulation; Receiving antennas; Signal design; Signal processing; Signal to noise ratio;
  • fLanguage
    English
  • Journal_Title
    Information Theory, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9448
  • Type

    jour

  • DOI
    10.1109/TIT.2003.817423
  • Filename
    1237127