• DocumentCode
    2033666
  • Title

    Analysis of Wiener-Hammerstein equalizer for downlink LTE system

  • Author

    Mallouki, Nasreddine ; Nsiri, Bechir ; Mhatli, Sofiene ; Ghanbarisabagh, Mohammad ; Hakimi, Walid ; Ammar, Mahmoud ; Giacoumidis, Elias ; Attia, Rabah

  • Author_Institution
    Sys´comLab, ENIT, BP.37 Le Belvédère 1002Tunis, Tunisia
  • fYear
    2015
  • fDate
    28-30 July 2015
  • Firstpage
    1077
  • Lastpage
    1082
  • Abstract
    We propose a Wiener-Hammerstein (W-H) channel estimation algorithm for Long-Term Evolution (LTE) systems. The LTE standard provides known data as pilot symbols and exploits them through coherent detection to improve system performance. These drivers are placed in a hybrid way to cover up both time and frequency domain. Our aim is to adapt the W-H equalizer (W-H/E) to LTE standard for compensation of both linear and nonlinear effects induced by power amplifiers and multipath channels. We evaluate the performance of the W-H/E for a Downlink LTE system in terms of BLER, EVM and Throughput versus SNR. Afterwards, we compare the results with a traditional Least-Mean Square (LMS) equalizer. It is shown that W-H/E can significantly reduce both linear and nonlinear distortions compared to LMS and improve LTE Downlink system performance.
  • Keywords
    Downlink; Finite impulse response filters; Least squares approximations; Long Term Evolution; Maximum likelihood detection; Nonlinear filters; Signal to noise ratio; LMS; LTE; Wiener-Hammerstein;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Science and Information Conference (SAI), 2015
  • Conference_Location
    London, United Kingdom
  • Type

    conf

  • DOI
    10.1109/SAI.2015.7237276
  • Filename
    7237276