• DocumentCode
    1159762
  • Title

    Low-complexity bit-interleaved coded DAPSK for Rayleigh-fading channels

  • Author

    Ishibashi, Koji ; Ochiai, Hideki ; Kohno, Ryuji

  • Author_Institution
    Div. of Phys., Yokohama Nat. Univ., Japan
  • Volume
    23
  • Issue
    9
  • fYear
    2005
  • Firstpage
    1728
  • Lastpage
    1738
  • Abstract
    We analyze the achievable performance of bit-interleaved coded differential amplitude and phase-shift keying (DAPSK) systems over frequency nonselective Rayleigh-fading channels with suboptimal differential detection assuming an ideal bit interleaving. The suboptimal differential detection in this work refers to the bit metric calculation based only on the difference between two consecutive symbols, in contrast to more complex maximum-likelihood (ML)-based differential detection, which makes use of all the observed consecutive symbols for its metric calculation in channel decoding. As benchmarks of coded system performance, we analyze the average mutual information (AMI) and cutoff rate of this system. Exact probability density functions of the suboptimal differential detector outputs are derived for this purpose. Comparative studies suggest that the performance loss of the suboptimal approach is in fact noticeable. Therefore, we also develop a low-complexity receiver structure in the framework of suboptimal differential detection that can approach the performance of ML-based system by suitably incorporating the amplitude statistics of received symbols. The theoretical framework developed in this paper is also confirmed by simulations using convolutional and turbo codes.
  • Keywords
    Rayleigh channels; amplitude shift keying; channel coding; convolutional codes; differential detection; differential phase shift keying; interleaved codes; maximum likelihood decoding; modulation coding; probability; radio receivers; turbo codes; AMI; BICM; DAPSK; average mutual information; bit-interleaved coded modulation; channel decoding; convolutional code; differential amplitude-phase-shift keying system; frequency nonselective Rayleigh-fading channel; maximum likelihood based system; metric calculation; probability density function; receiver; suboptimal differential detection; turbo code; Information analysis; Interleaved codes; Maximum likelihood decoding; Maximum likelihood detection; Performance analysis; Phase detection; Phase frequency detector; Phase shift keying; Rayleigh channels; System performance; Average mutual information (AMI); bit-interleaved coded modulation (BICM); cutoff rate; differential amplitude and phase-shift keying (DAPSK); differential detection; metric calculation; receiver complexity;
  • fLanguage
    English
  • Journal_Title
    Selected Areas in Communications, IEEE Journal on
  • Publisher
    ieee
  • ISSN
    0733-8716
  • Type

    jour

  • DOI
    10.1109/JSAC.2005.853879
  • Filename
    1504906