• DocumentCode
    821543
  • Title

    Constellation Design for Trellis-Coded Unitary Space–Time Modulation Systems

  • Author

    Wu, Yi ; Lau, Vincent K N ; Pätzold, Matthias

  • Author_Institution
    Dept. of Electr. & Electron. Eng., Hong Kong Univ. of Sci. & Technol.
  • Volume
    54
  • Issue
    11
  • fYear
    2006
  • Firstpage
    1948
  • Lastpage
    1959
  • Abstract
    We consider the problem of creating signal constellations for trellis-coded unitary space-time communication links, where neither the transmitter nor the receiver knows the fading gains of the channel. Our study includes constellation-design techniques for trellis-coded schemes with and without parallel paths, which allows us to find a tradeoff between low complexity and high performance. We present a new formulation of the constellation design problem for trellis-coded unitary space-time modulation (TCUSTM) schemes. The two key differences in our approach against those of other authors are that we not only combine the constellation design and mapping by set partitioning into one step, but we also use directly the Chernoff bound of the pairwise error probability as a design metric. By novelly employing a theorem for the Clarke subdifferential of the sum of the k largest singular values of the unitary matrix, we also present a numerical optimization procedure for finding signal constellations resulting in high-performance communications systems. To demonstrate the advantages of our new design method, we report the best constellations found for TCUSTM systems. Simulation results show that these constellations achieve a 1-dB coding gain at a bit-error rate of 10-4 against usually used constellations
  • Keywords
    error statistics; singular value decomposition; space-time codes; trellis coded modulation; BER; Chernoff bound; Clarke subdifferentiation; TCUSTM system; bit-error rate; coding gain; numerical optimization; pairwise error probability; signal constellation design; singular values; space-time communication links; trellis-coded unitary space-time modulation; unitary matrix; Communication systems; Communications technology; Constellation diagram; Design methodology; Fading; Modulation coding; Pairwise error probability; Receiving antennas; Signal design; Transmitters; Constellation design; multiple antennas; noncoherent communications; trellis-coded modulation (TCM);
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2006.884828
  • Filename
    4012515