• DocumentCode
    9929
  • Title

    Underwater Localization with Time-Synchronization and Propagation Speed Uncertainties

  • Author

    Diamant, Roee ; Lampe, Lutz

  • Author_Institution
    Univ. of British Columbia, Vancouver, BC, Canada
  • Volume
    12
  • Issue
    7
  • fYear
    2013
  • fDate
    Jul-13
  • Firstpage
    1257
  • Lastpage
    1269
  • Abstract
    Underwater acoustic localization (UWAL) is a key element in most underwater communication applications. The absence of GPS as well as the signal propagation environment makes UWAL similar to indoor localization. However, UWAL poses additional challenges. The propagation speed varies with depth, temperature, and salinity, anchor and unlocalized (UL) nodes cannot be assumed time-synchronized, and nodes are constantly moving due to ocean currents or self-motion. Taking these specific features of UWAL into account, in this paper, we describe a new sequential algorithm for joint time-synchronization and localization for underwater networks. The algorithm is based on packet exchanges between anchor and UL nodes, makes use of directional navigation systems employed in nodes to obtain accurate short-term motion estimates, and exploits the permanent motion of nodes. Our solution also allows self-evaluation of the localization accuracy. Using simulations, we compare our algorithm to two benchmark localization methods as well as to the Cramér-Rao bound (CBR). The results demonstrate that our algorithm achieves accurate localization using only two anchor nodes and outperforms the benchmark schemes when node synchronization and knowledge of propagation speed are not available. Moreover, we report results of a sea trial where we validated our algorithm in open sea.
  • Keywords
    Global Positioning System; indoor radio; motion estimation; sensor placement; synchronisation; underwater acoustic communication; underwater acoustic propagation; CBR; Cramοr-Rao bound; GPS; UL node; UWAL; anchor node; benchmark localization method; directional navigation system; indoor localization; motion estimation; packet exchange; permanent node motion; propagation speed uncertainty; sequential algorithm; signal propagation environment; time synchronization; underwater acoustic localization; underwater communication; underwater network; Accuracy; Channel estimation; Estimation; Mobile computing; Sea measurements; Synchronization; Underwater acoustics; Underwater acoustic localization (UWAL); propagation speed uncertainties; time-synchronization;
  • fLanguage
    English
  • Journal_Title
    Mobile Computing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1233
  • Type

    jour

  • DOI
    10.1109/TMC.2012.100
  • Filename
    6189351