• DocumentCode
    1757462
  • Title

    Achieving Delay Diversity in Asynchronous Underwater Acoustic (UWA) Cooperative Communication Systems

  • Author

    Rahmati, Mehdi ; Duman, Tolga M.

  • Author_Institution
    Sch. of Electr., Comput. & Energy Eng. (ECEE), Arizona State Univ., Tempe, AZ, USA
  • Volume
    13
  • Issue
    3
  • fYear
    2014
  • fDate
    41699
  • Firstpage
    1367
  • Lastpage
    1379
  • Abstract
    In cooperative UWA systems, due to the low speed of sound, a node can experience significant time delays among the signals received from geographically separated nodes. One way to combat the asynchronism issues is to employ orthogonal frequency division multiplexing (OFDM)-based transmissions at the source node by preceding every OFDM block with an extremely long cyclic prefix (CP) which reduces the transmission rates dramatically. One may increase the OFDM block length accordingly to compensate for the rate loss which also degrades the performance due to the significantly time-varying nature of UWA channels. In this paper, we develop a new OFDM-based scheme to combat the asynchronism problem in cooperative UWA systems without adding a long CP (in the order of the long relative delays) at the transmitter. By adding a much more manageable (short) CP at the source, we obtain a delay diversity structure at the destination for effective processing and exploitation of spatial diversity by utilizing a low complexity Viterbi decoder at the destination, e.g., for a binary phase shift keying (BPSK) modulated system, we need a two-state Viterbi decoder. We provide pairwise error probability (PEP) analysis of the system for both time-invariant and block fading channels showing that the system achieves full spatial diversity. We find through extensive simulations that the proposed scheme offers a significantly improved error rate performance for time-varying channels (typical in UWA communications) compared to the existing approaches.
  • Keywords
    OFDM modulation; Viterbi decoding; cooperative communication; diversity reception; error statistics; fading channels; time-varying channels; underwater acoustic communication; BPSK modulated system; OFDM block length; OFDM-based scheme; OFDM-based transmissions; PEP analysis; UWA channel; UWA cooperative communication systems; asynchronism issue; asynchronism problem; asynchronous underwater acoustic cooperative communication systems; binary phase shift keying modulated system; block fading channel; cyclic prefix; delay diversity structure; full-spatial diversity; geographically-separated nodes; improved error rate performance; low-complexity Viterbi decoder; manageable CP; orthogonal frequency division multiplexing; pairwise error probability analysis; rate loss compensation; source node; spatial diversity; time delays; time-invariant channel; time-varying channel; transmission rate reduction; two-state Viterbi decoder; Delays; Fading; Noise; OFDM; Receivers; Relays; Viterbi algorithm; Asynchronous communication; OFDM; cooperative systems; underwater acoustics;
  • fLanguage
    English
  • Journal_Title
    Wireless Communications, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1276
  • Type

    jour

  • DOI
    10.1109/TWC.2014.020414.130538
  • Filename
    6733257