• DocumentCode
    2880790
  • Title

    Communications diversity advantages for the Mobile User Objective System

  • Author

    Kullstam, Per A.

  • Author_Institution
    PAIRCOM Inc., Springfield, VA, USA
  • Volume
    2
  • fYear
    2000
  • fDate
    2000
  • Firstpage
    784
  • Abstract
    The UHF radio frequency (RF) band available for the our future military Mobile User Objective System (MUOS) satellite communications system has to contend with the signal scintillation effects encountered from propagation through the ionosphere as well as multipath signals from terrestrial signal reflections that will be prominent with new handheld terminals. These effects cause signal fading which can severely degrade the communications performance, but fortunately there are a multitude of diversity techniques which can greatly improve the performance as well. In this report we consider: (1) implicit channel diversity over (1a) coherent bandwidth limited channels and (1b) time dispersion by using interleaving and coding, as well as (2) explicit channel diversity employing different (2a) carrier frequencies and (2b) propagation paths. All these techniques can gainfully be used with the MUOS although frequency diversity may be less applicable on the UHF Earth terminal uplink. The material presented should be useful in the system design and evaluation of various system realization concepts
  • Keywords
    UHF radio propagation; bandlimited communication; channel coding; diversity reception; fading channels; military communication; mobile satellite communication; multipath channels; time-varying channels; MUOS; UHF; UHF Earth terminal uplink; carrier frequencies; channel diversity; coding; coherent bandwidth limited channels; communications diversity advantages; communications performance; frequency diversity; handheld terminals; interleaving; ionosphere; military Mobile User Objective System satellite communications system; multipath signals; propagation; propagation paths; scintillation effects; signal fading; terrestrial signal reflections; time dispersion; Fading; Frequency diversity; Ionosphere; Military communication; Mobile communication; RF signals; Radio frequency; Reflection; Satellite communication; UHF propagation;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    MILCOM 2000. 21st Century Military Communications Conference Proceedings
  • Conference_Location
    Los Angeles, CA
  • Print_ISBN
    0-7803-6521-6
  • Type

    conf

  • DOI
    10.1109/MILCOM.2000.904037
  • Filename
    904037