• DocumentCode
    1550656
  • Title

    Traffic performance analysis of handover in GMPCS systems

  • Author

    Cho, Jaeweon ; Hong, Daehyoung

  • Author_Institution
    Dept. of Electron. Eng., Sogang Univ., Seoul, South Korea
  • Volume
    50
  • Issue
    6
  • fYear
    2001
  • fDate
    11/1/2001 12:00:00 AM
  • Firstpage
    1518
  • Lastpage
    1527
  • Abstract
    This paper presents an analysis of handover process and its effect on the traffic performance in global mobile personal communications by satellite (GMPCS) systems. With the nongeostationary satellite used for the system, the handover scheme needs to be applied to make calls completed without any interruption. An analytical model is developed for the analysis of the handover process. We derive the mean number of handovers and handover delay with various satellite antenna patterns and different settings of handover parameter. A suitable traffic model of the whole system is also derived after due considerations of the handover process. The system performance measures include new call blocking probability, call dropping probability, and mean number of handovers per call. A computer simulation is developed and used. We also analyze the system performance with a number of handover priority schemes applied. Based on the study results, the handover parameters are selected to maximize the traffic performance. It is shown that we can improve the overall traffic performance of GMPCS system by setting handover parameters properly and using the handover priority scheme
  • Keywords
    cellular radio; delays; digital simulation; mobile satellite communication; personal communication networks; probability; telecommunication traffic; GMPCS systems; LEO satellites; MEO satellites; call dropping probability; cellular radio; computer simulation; global mobile personal communications by satellite; handover delay; handover parameters; handover priority; low Earth orbit; mean number of handovers; mean number of handovers per call; medium Earth orbit; new call blocking probability; nongeostationary satellite; satellite antenna patterns; system performance; traffic model; traffic performance; traffic performance analysis; Analytical models; Artificial satellites; Delay; Low earth orbit satellites; Mobile communication; Performance analysis; Quality of service; Satellite antennas; System performance; Traffic control;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/25.966582
  • Filename
    966582