• DocumentCode
    743230
  • Title

    Capacity of SIMO and MISO Phase-Noise Channels With Common/Separate Oscillators

  • Author

    Khanzadi, M. Reza ; Durisi, Giuseppe ; Eriksson, Thomas

  • Volume
    63
  • Issue
    9
  • fYear
    2015
  • Firstpage
    3218
  • Lastpage
    3231
  • Abstract
    In multiple antenna systems, phase noise due to instabilities of the radio-frequency (RF) oscillators, acts differently depending on whether the RF circuitries connected to each antenna are driven by separate (independent) local oscillators (SLO) or by a common local oscillator (CLO). In this paper, we investigate the high-SNR capacity of single-input multiple-output (SIMO) and multiple-output single-input (MISO) phase-noise channels for both the CLO and the SLO configurations. Our results show that the first-order term in the high-SNR capacity expansion is the same for all scenarios (SIMO/MISO and SLO/CLO), and equal to 0.5\\ln(\\rho) , where \\rho stands for the SNR. On the contrary, the second-order term, which we refer to as phase-noise number, turns out to be scenario-dependent. For the SIMO case, the SLO configuration provides a diversity gain, resulting in a larger phase-noise number than for the CLO configuration. For the case of Wiener phase noise, a diversity gain of at least 0.5\\ln(M) can be achieved, where M is the number of receive antennas. For the MISO, the CLO configuration yields a higher phase-noise number than the SLO configuration. This is because with the CLO configuration one can obtain a coherent-combining gain through maximum ratio transmission (a.k.a. conjugate beamforming). This gain is unattainable with the SLO configuration.
  • Keywords
    Antennas; Local oscillators; Phase noise; Signal to noise ratio; Uplink; Phase noise; Wiener process; channel capacity; distributed oscillators; multiple antennas;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2015.2408605
  • Filename
    7054485