• DocumentCode
    316003
  • Title

    Minimum error probability and suboptimum noncoherent detection for nonlinear nonorthogonal synchronous signaling over a Rayleigh fading channel

  • Author

    Russ, Artur ; Varanasi, Mahesh K.

  • Author_Institution
    Dept. of Electr. Eng., Colorado Univ., Boulder, CO, USA
  • Volume
    1
  • fYear
    1997
  • fDate
    1-4 Sep 1997
  • Firstpage
    58
  • Abstract
    Coherent multiuser detection for linear modulation has been the subject of much research. Noncoherent detection for linear differentially phase shift keyed modulation has also received considerable attention, whereas research in the field of noncoherent detection for nonlinear modulation in correlated-waveform multiple access channels has been far more limited. This paper considers for the first time the problem of noncoherent multiuser detection for binary, nonlinear, nonorthogonal signaling over a synchronous, frequency-nonselective Rayleigh fading channel. A minimum error probability multiuser detector is derived and analyzed through asymptotically convergent upper and lower bounds on error probability. This detector has an exponential (in the number of users) time complexity. Consequently, a suboptimum noncoherent decorrelative energy detector (NDED) is proposed, whose complexity is linear in the number of users. The NDED is analyzed exactly in terms of error probability. An asymptotic performance analysis is undertaken for the NDED and, to serve as a comparison, for the conventional detector. It is shown that the former is near-far resistant, the latter, however, near-far limited
  • Keywords
    fading; NDED; asymptotic performance analysis; exponential time complexity; minimum error probability; noncoherent multiuser detection; nonlinear nonorthogonal synchronous signaling; suboptimum noncoherent decorrelative energy detector; suboptimum noncoherent detection; synchronous frequency-nonselective Rayleigh fading channel; Decorrelation; Detectors; Error probability; Fading; Frequency; Integrated circuit modeling; Integrated circuit noise; Multiuser detection; Phase detection; Phase modulation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Personal, Indoor and Mobile Radio Communications, 1997. Waves of the Year 2000. PIMRC '97., The 8th IEEE International Symposium on
  • Conference_Location
    Helsinki
  • Print_ISBN
    0-7803-3871-5
  • Type

    conf

  • DOI
    10.1109/PIMRC.1997.624363
  • Filename
    624363