• DocumentCode
    33397
  • Title

    Frequency and Quadrature-Amplitude Modulation for Downlink Cellular OFDMA Networks

  • Author

    Sungnam Hong ; Min Sagong ; Chiwoo Lim ; Sunghye Cho ; Kyungwhoon Cheun ; Kyeongcheol Yang

  • Author_Institution
    Digital Media & Commun. (DMC) R&D (R&D) Center, Samsung Electron. Co., Ltd., Suwon, South Korea
  • Volume
    32
  • Issue
    6
  • fYear
    2014
  • fDate
    Jun-14
  • Firstpage
    1256
  • Lastpage
    1267
  • Abstract
    The distribution of the intercell interference (ICI) in conventional cellular networks employing orthogonal frequency-division multiple-access (OFDMA) with quadrature-amplitude modulation (QAM) tends to approach a Gaussian distribution when all available subcarriers in each cell are fully loaded. Recently, it has been also shown that the worst-case distribution of the ICI as additive noise in wireless networks with respect to the channel capacity is Gaussian. Thus, the channel capacity in cellular networks is expected to be further enhanced when the ICI could be designed properly so that it has a non-Gaussian distribution. This observation motivates us to propose, in this paper, a downlink cellular OFDMA network employing a modulation scheme called frequency and QAM (FQAM). We also derive maximum-likelihood metrics for the binary or non-binary error-correcting codes employed in the proposed network and propose their practical sub-optimal versions. Numerical results demonstrate that the distribution of the ICI in the proposed network deviates far from the Gaussian distribution. As a result, the transmission rates for the cell-edge users in the proposed network are significantly improved. In addition, the measurement results using practically implemented FQAM-based OFDMA systems verify that the transmission rates for the cell-edge users can dramatically increase, compared with the conventional QAM-based OFDMA network.
  • Keywords
    Gaussian distribution; OFDM modulation; binary codes; cellular radio; channel capacity; error correction codes; frequency division multiple access; quadrature amplitude modulation; radio networks; FQAM-based OFDMA systems; Gaussian distribution; ICI distribution; additive noise; binary error-correcting codes; cell-edge users; channel capacity; downlink cellular OFDMA networks; frequency and QAM; frequency and quadrature-amplitude modulation; intercell interference distribution; maximum-likelihood metrics; modulation scheme; nonGaussian distribution; nonbinary error-correcting codes; orthogonal frequency-division multiple-access; transmission rates; wireless networks; Decoding; Downlink; Frequency shift keying; Measurement; OFDM; Quadrature amplitude modulation; Bit-interleaved coded modulation; coded modulation; frequency and quadrature-amplitude modulation; frequency-shift keying; quadrature amplitude modulation;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2014.2328112
  • Filename
    6824737