• DocumentCode
    53854
  • Title

    Minimum Pseudoweight Analysis of 3-Dimensional Turbo Codes

  • Author

    Rosnes, Eirik ; Helmling, Michael ; Graell i Amat, Alexandre

  • Author_Institution
    Ceragon Networks AS, Kokstad, Norway
  • Volume
    62
  • Issue
    7
  • fYear
    2014
  • fDate
    Jul-14
  • Firstpage
    2170
  • Lastpage
    2182
  • Abstract
    In this paper, we consider pseudocodewords of (relaxed) linear programming (LP) decoding of 3-dimensional turbo codes (3D-TCs). We present a relaxed LP decoder for 3D-TCs, adapting the relaxed LP decoder for conventional turbo codes proposed by Feldman in his thesis. We show that the 3D-TC polytope is proper and C-symmetric and make a connection to finite graph covers of the 3D-TC factor graph. This connection is used to show that the support set of any pseudocodeword is a stopping set of iterative decoding of 3D-TCs using maximum a posteriori constituent decoders on the binary erasure channel. Furthermore, we compute ensemble-average pseudoweight enumerators of 3D-TCs and perform a finite-length minimum pseudoweight analysis for small cover degrees. Moreover, an explicit description of the fundamental cone of the 3D-TC polytope is given. Finally, we present an extensive numerical study of small-to-medium block length 3D-TCs, which shows that 1) typically (i.e., in most cases), when the minimum distance dmin and/or the stopping distance hmin is high, the minimum pseudoweight (on the additive white Gaussian noise channel) is strictly smaller than both dmin and hmin and that 2) the minimum pseudoweight grows with the block length, at least for small-to-medium block lengths.
  • Keywords
    iterative decoding; linear programming; maximum likelihood decoding; turbo codes; 3-dimensional turbo codes; 3D-TC factor graph; 3D-TC polytope; C-symmetric; ensemble-average pseudoweight enumerators; finite graph covers; finite-length minimum pseudoweight analysis; iterative decoding; linear programming decoding; maximum a posteriori constituent decoders; relaxed LP decoder; Convolutional codes; Educational institutions; Indexes; Maximum likelihood decoding; Parity check codes; Turbo codes; QPP interleavers; Three-dimensional (3D) turbo codes; graph cover; hybrid concatenated codes; linear programming (LP) decoding; pseudocodewords; pseudoweight; turbo codes; uniform interleaver;
  • fLanguage
    English
  • Journal_Title
    Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0090-6778
  • Type

    jour

  • DOI
    10.1109/TCOMM.2014.2329690
  • Filename
    6834828