• DocumentCode
    514397
  • Title

    A novel BEM- based channel estimation algorithm for time variant uplink OFDMA system

  • Author

    Ganji, Fatemeh ; Tabatabavakili, Vahid ; Khodadad, Farid Samsami ; Hosseinnezhad, Makan ; Safaei, Amin

  • Author_Institution
    Malek Ashtar Univ., Tehran, Iran
  • Volume
    2
  • fYear
    2010
  • fDate
    7-10 Feb. 2010
  • Firstpage
    1289
  • Lastpage
    1293
  • Abstract
    IN this paper the effect of different channel estimation approaches in OFDMA uplink system which are based on Basis Expansion Model (BEM) and widely used to consider time varying channels are discussed. It has been shown in previous works that modeling error will be reduced by applying oversampled BEM with cost of increasing sensitivity to noise. This problem will be solved by combining oversampled BEM and MMSE channel estimator with cost of increasing computational complexity. In this paper a novel channel estimation approach is represented in which by combining oversampled BEM and low rank MMSE in frequency domain, almost the same performance as the full rank MMSE has been achieved while computational complexity reduces significantly.
  • Keywords
    channel estimation; frequency division multiple access; least mean squares methods; time-varying channels; basis expansion model; channel estimation; computational complexity; minimum mean square error methods; orthogonal frequency division multiple access; time variant uplink OFDMA system; Channel estimation; Computational complexity; Fading; Frequency conversion; Frequency domain analysis; Frequency estimation; Interference; OFDM; Random processes; Scattering; Basis Expansion Model (BEM); Channel estimation; MMSE; OFDMA; Time varying channel;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Advanced Communication Technology (ICACT), 2010 The 12th International Conference on
  • Conference_Location
    Phoenix Park
  • ISSN
    1738-9445
  • Print_ISBN
    978-1-4244-5427-3
  • Type

    conf

  • Filename
    5440270