• DocumentCode
    1226153
  • Title

    Equaliser techniques for QAM transmissions over dispersive mobile radio channels

  • Author

    Webb, W.T. ; Steele, R.

  • Author_Institution
    Dept. of Electron. & Comput. Sci., Southampton Univ., UK
  • Volume
    138
  • Issue
    6
  • fYear
    1991
  • Firstpage
    566
  • Lastpage
    576
  • Abstract
    Channel equalisation of 32 Mbit/s data transmitted via 16-level QAM at 1.9 GHz over dispersive fading channels is addressed using computer simulations. The multipath propagation channels used had three independent Rayleigh fading paths. The conventional equaliser systems were found to be unsatisfactory and an alternative system was conceived based on a RAKE-type equaliser controlling an iterative decision feedback equaliser. Although complex, simulations showed this equaliser system to yield an order of magnitude reduction in BER compared to that for a linear equaliser at SNRs in excess of 15 dB. Advantages are presented of using error correction coding in the conventional way and in an iterative manner to aid convergence of the equaliser. Gains of 2 to 3 dB were achieved by iterative decoding but at the expense of considerable increase in complexity. When second order spatial diversity was used the authors achieved improvements of about 5 to 7 dB when both systems were uncoded despite the inherent diversity that can be gained from equalising a wideband channel. By operating at SNRs greater than 25 dB, they were able to simulate transmission at 32 Mbit/s with a BER below 10 -3.<>
  • Keywords
    amplitude modulation; diversity reception; encoding; equalisers; error correction codes; fading; mobile radio systems; radiowave propagation; telecommunication channels; 1.9 GHz; 16-level QAM; 2 to 3 dB; 32 Mbit/s; BER; RAKE-type equaliser; Rayleigh fading paths; SNR; UHF; channel equalisation; computer simulations; convergence; data transmission; dispersive fading channels; dispersive mobile radio channels; equaliser systems; error correction coding; iterative decision feedback equaliser; iterative decoding; multipath propagation channels; second order spatial diversity; wideband channel;
  • fLanguage
    English
  • Journal_Title
    Communications, Speech and Vision, IEE Proceedings I
  • Publisher
    iet
  • ISSN
    0956-3776
  • Type

    jour

  • Filename
    109055