• DocumentCode
    13915
  • Title

    Joint Ranging and Synchronization for an Anchorless Network of Mobile Nodes

  • Author

    Rajan, Raj Thilak ; van der Veen, Alle-Jan

  • Author_Institution
    Netherlands Inst. for Radio Astron. (ASTRON), Dwingeloo, Netherlands
  • Volume
    63
  • Issue
    8
  • fYear
    2015
  • fDate
    15-Apr-15
  • Firstpage
    1925
  • Lastpage
    1940
  • Abstract
    Synchronization and localization are critical challenges for the coherent functioning of a wireless network, which are conventionally solved independently. Recently, various estimators have been proposed for pairwise synchronization between immobile nodes, based on time stamp exchanges via two-way communication. In this paper, we consider a network of mobile nodes for which a novel joint time-range model is presented, treating both unsynchronized clocks and the pairwise distances as a polynomial functions of true time. For a pair of nodes, a least squares solution is proposed for estimating the pairwise range parameters between the nodes, in addition to estimating the clock offsets and clock skews. Extending these pairwise solutions to network-wide ranging and clock synchronization, we present a central data fusion based global least squares algorithm. A unique solution is nonexistent without a constraint on the cost function e.g., a clock reference node. Ergo, a constrained framework is proposed and a new Constrained Cramér-Rao Bound (CCRB) is derived for the joint time-range model. In addition, to alleviate the need for a single clock reference, various clock constraints are presented and their benefits are investigated using the proposed solutions. Simulations are conducted and the algorithms are shown to approach the theoretical limits.
  • Keywords
    estimation theory; least squares approximations; mobile radio; polynomials; synchronisation; wireless channels; CCRB; Ergo constrained framework; anchorless network; central data fusion; clock offsets; clock reference node; clock skews; clock synchronization; constrained Cramer-Rao bound; global least squares algorithm; immobile nodes; joint ranging; joint time-range model; localization; pairwise distances; pairwise synchronization; polynomial functions; time stamp exchanges; two-way communication; unsynchronized clocks; wireless network; Clocks; Distance measurement; Joints; Least squares approximations; Mobile nodes; Synchronization; Joint estimation; nullspace constraint; relative position; sum constraint; virtual clock;
  • fLanguage
    English
  • Journal_Title
    Signal Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1053-587X
  • Type

    jour

  • DOI
    10.1109/TSP.2015.2391076
  • Filename
    7006748