• DocumentCode
    631738
  • Title

    Stochastic analysis on epidemic dissemination of lifetime-controlled messages in DTNs

  • Author

    Huawei Huang ; Deze Zeng ; Song Guo ; Hong Yao ; Miyazaki, Toshimasa

  • Author_Institution
    Sch. of Comput., China Univ. of Geosci., Wuhan, China
  • fYear
    2013
  • fDate
    1-5 July 2013
  • Firstpage
    1578
  • Lastpage
    1583
  • Abstract
    To understand the delivery performance of message dissemination in Disruption Tolerant Networks (DTNs), various methods have been proposed in the literature. However, existing work shares a common simplification that the pairwise meeting rate between any two mobile nodes is exponentially distributed. In this paper, instead of relying on such assumption, we jointly consider the transmission range and Random Direction Mobility (RDM) model to stochastically analyze delivery performance of epidemic routing in terms of percolation ratio and delivery delay. Furthermore, we study a controlled epidemic routing, in which any message stays at a mobile node longer than a predefined lifetime should be removed from the node. It can be considered as an age-structure process described by the Susceptible-Infectious-Recovered (SIR) model. To the best of our knowledge, we are the first to characterize the message propagation process by applying the Delay Differential Equations (DDEs) in DTNs. The correctness of our analysis is validated by extensive simulations.
  • Keywords
    delay tolerant networks; differential equations; message passing; mobile radio; stochastic processes; telecommunication network routing; DDE; DTN; RDM model; SIR model; age-structure process; delay differential equations; delay tolerant network; delivery delay; delivery performance; disruption tolerant networks; epidemic dissemination; epidemic routing; lifetime-controlled messages; message dissemination; message propagation process; mobile nodes; percolation ratio; random direction mobility; stochastic analysis; susceptible-infectious-recovered model; transmission range; Accuracy; Analytical models; Delays; Mathematical model; Mobile nodes; Routing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Wireless Communications and Mobile Computing Conference (IWCMC), 2013 9th International
  • Conference_Location
    Sardinia
  • Print_ISBN
    978-1-4673-2479-3
  • Type

    conf

  • DOI
    10.1109/IWCMC.2013.6583791
  • Filename
    6583791