• DocumentCode
    691155
  • Title

    Simulated CDMA2000 Wireless Links and System Performance

  • Author

    Zhao Lingli

  • Author_Institution
    Electron. Eng. Inst., North Univ. for Nat., Yinchuan, China
  • fYear
    2013
  • fDate
    21-23 Sept. 2013
  • Firstpage
    1021
  • Lastpage
    1024
  • Abstract
    Simulation approaches are usually required and important when analyzing the performance of cellular radio communication system. This paper studies Wireless links and the system performance of cdma2000 cellular radio system. It is established a cdma2000 RC3 forward fundamental channel (F-FCH) model, simulated the signal spectrum of transmission side and receiving, the results show that the effect on the signal channel. Studies cdma2000 system-level performance on Monte Carlo method, simulated Pilot Ec/Io, the soft handover, the Pilot Eb/N0 and Pilot pollution, the results can be analyzed network coverage, capacity and quality, to achieve the system performance analysis. The results also show that modeling and simulation methods in the study of cellular radio systems have a scientific significance.
  • Keywords
    3G mobile communication; Monte Carlo methods; cellular radio; radio links; F-FCH model; Monte Carlo method; cdma2000 RC3 forward fundamental channel model; cdma2000 cellular radio system; cdma2000 system-level performance; cellular radio communication system; pilot Eb/N0; pilot pollution; signal channel effect; signal spectrum; simulated cdma2000 wireless links; simulated pilot Ec/Io; soft handover; system performance analysis; Analytical models; Handover; Land mobile radio cellular systems; System performance; Wireless communication; performance of cellular radio system; simulation; wireless links;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Instrumentation, Measurement, Computer, Communication and Control (IMCCC), 2013 Third International Conference on
  • Conference_Location
    Shenyang
  • Type

    conf

  • DOI
    10.1109/IMCCC.2013.227
  • Filename
    6840617