• DocumentCode
    2515542
  • Title

    On the design of universal LDPC codes

  • Author

    Sanaei, Ali ; Ramezani, Mahdi ; Ardakani, Masoud

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB
  • fYear
    2008
  • fDate
    6-11 July 2008
  • Firstpage
    802
  • Lastpage
    806
  • Abstract
    Low-density parity-check (LDPC) coding for a multitude of equal-capacity channels is studied. First, based on numerous observations, a conjecture is stated that when the belief propagation decoder converges on a set of equal-capacity channels, it would also converge on any convex combination of those channels. Then, it is proved that when the stability condition is satisfied for a number of channels, it is also satisfied for any channel in their convex hull. For the purpose of code design, a method is proposed which can decompose every symmetric channel with capacity C into a set of identical-capacity basis channels. We expect codes that work on the basis channels to be suitable for any channel with capacity C. Such codes are found and in comparison with existing LDPC codes that are designed for specific channels, our codes obtain considerable coding gains when used across a multitude of channels.
  • Keywords
    channel capacity; channel coding; decoding; parity check codes; belief propagation decoder; equal-capacity channels; identical-capacity basis channels; low-density parity-check coding; stability condition; symmetric channel; universal LDPC codes design; Belief propagation; Channel capacity; Decoding; Design methodology; Design optimization; Error correction codes; Gaussian channels; Parity check codes; Rayleigh channels; Stability analysis;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information Theory, 2008. ISIT 2008. IEEE International Symposium on
  • Conference_Location
    Toronto, ON
  • Print_ISBN
    978-1-4244-2256-2
  • Electronic_ISBN
    978-1-4244-2257-9
  • Type

    conf

  • DOI
    10.1109/ISIT.2008.4595097
  • Filename
    4595097