• DocumentCode
    1970072
  • Title

    Performance evaluation of a joint source/channel coding scheme for DS/SSMA systems utilizing complex spreading sequences in multipath fading channel conditions

  • Author

    Staphorst, Leonard ; Schoeman, Johan ; Linde, Louis P.

  • Author_Institution
    Dept. of Electr., Electron. & Comput. Eng., Pretoria Univ., South Africa
  • Volume
    3
  • fYear
    2003
  • fDate
    4-7 May 2003
  • Firstpage
    1679
  • Abstract
    In recent years, the joint decoding of combined source and channel coding have shown the capability of delivering performances exceeding that of separately decoded schemes. In this paper, a well-known joint source/channel coding scheme is investigated for possible use in future 4th Generation (4G) direct sequence spread spectrum multiple access (DS/SSMA) code division multiple access (CDMA) communication systems. Due to the availability of potentially large sets of sequences with good correlation characteristics, the DS/SSMA CDMA system considered in this paper employs complex spreading sequences (CSS). A multiuser CSS-based DS/SSMA CDMA communication system was implemented as test platform for the joint source/channel coding scheme. Several families of CSSs, including Zadoff-Chu (ZC), double sideband constant envelope linearly interpolated root-of-unity filtered general chirp-like (DSB CE-LI-RU Filtered GCL), analytical bandlimited complex (ABC) and quadriphase (QPH) sequences are investigated on this platform. Simulated bit error rate (BER) performances are presented for uncoded, separate source and channel coded and joint source/channel coded systems under realistic multipath fading channel conditions.
  • Keywords
    4G mobile communication; Viterbi decoding; code division multiple access; combined source-channel coding; error statistics; fading channels; multipath channels; spread spectrum communication; 4th generation direct sequence spread spectrum multiple access; CDMA; DS-SSMA systems; Zadoff-Chu; analytical bandlimited complex; bit error rate; code division multiple access communication; complex spreading sequences; double sideband constant envelope linearly interpolated root-of-unity filtered general chirp-like; joint source-channel coding scheme; multipath fading channel conditions; quadriphase sequences; Availability; Bit error rate; Cascading style sheets; Channel coding; Chirp; Decoding; Fading; Multiaccess communication; Spread spectrum communication; System testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Electrical and Computer Engineering, 2003. IEEE CCECE 2003. Canadian Conference on
  • ISSN
    0840-7789
  • Print_ISBN
    0-7803-7781-8
  • Type

    conf

  • DOI
    10.1109/CCECE.2003.1226232
  • Filename
    1226232