• DocumentCode
    2433179
  • Title

    A Low Complexity ICI Cancellation Method for High Mobility OFDM Systems

  • Author

    Kim, Kwanghoon ; Park, Hyuncheol

  • Author_Institution
    Sch. of Eng., Inf. & Commun. Univ., Daejeon
  • Volume
    5
  • fYear
    2006
  • fDate
    7-10 May 2006
  • Firstpage
    2528
  • Lastpage
    2532
  • Abstract
    Orthogonal frequency division multiplexing (OFDM) can significantly reduce a receiver complexity using one-tap frequency domain equalizer in a frequency-selective fading channel. However, the channel variation due to high mobility gives a time-selectivity in one OFDM symbol. As a result, each OFDM subcarrier experiences inter-carrier interference (ICI) that makes the equalization process very complicate. We propose a low complexity ICI cancellation method that takes advantage of the ICI power distribution. Instead of computing the inversion of the whole channel frequency response (CFR) matrix, we split the matrix into several small sub-matrices that contain significant channel information and perform a linear minimum mean squared error (LMMSE) equalization. We also propose an efficient successive interference cancellation (SIC) method that can effectively utilize a time diversity resulting from the mobility. Simulation results show that the performance improvements is remarkable even though the sub-matrix size is much smaller than that of the whole CFR matrix while taking high computational efficiency
  • Keywords
    OFDM modulation; computational complexity; equalisers; fading channels; interference suppression; least mean squares methods; mobile radio; radiofrequency interference; ICI cancellation method; LMMSE; OFDM symbol; channel frequency response matrix; equalization process; frequency-selective fading channel; inter-carrier interference; linear minimum mean squared error; orthogonal frequency division multiplexing; receiver complexity; successive interference cancellation; time-selectivity; Computational efficiency; Computational modeling; Equalizers; Frequency domain analysis; Frequency response; Frequency-selective fading channels; Interference cancellation; OFDM; Power distribution; Silicon carbide;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Vehicular Technology Conference, 2006. VTC 2006-Spring. IEEE 63rd
  • Conference_Location
    Melbourne, Vic.
  • ISSN
    1550-2252
  • Print_ISBN
    0-7803-9391-0
  • Electronic_ISBN
    1550-2252
  • Type

    conf

  • DOI
    10.1109/VETECS.2006.1683313
  • Filename
    1683313