• DocumentCode
    1425043
  • Title

    Error probability of M-ary FSK with differential phase detection in satellite mobile channel

  • Author

    Korn, Israel

  • Author_Institution
    Deutsche Forschungs- und Versuchsanstalt fuer Luft- und Raumfahrt, Oberfaffenhofen, West Germany
  • Volume
    38
  • Issue
    2
  • fYear
    1989
  • fDate
    5/1/1989 12:00:00 AM
  • Firstpage
    76
  • Lastpage
    85
  • Abstract
    Formulas are derived for the error probability of M-ary frequency shift keying (FSK) with differential phase detection in a satellite mobile channel. The received signal in this channel is composed of a specular signal, a diffuse signal, and white Gaussian noise; hence, the composite signal is fading and has a Rician envelope. The error probability is shown to depend on the following system parameters: (1) the signal-to-noise ratio; (2) the ratio of powers in the specular and diffuse signal components; (3) the normalized frequency deviation; (4) the normalized Doppler frequency; (5) the maximum normalized Doppler frequency; (6) the correlation function of the diffuse component, which depends on the normalized Doppler frequency and the type of the antenna; (7) the number of symbols; and (8) the normalized time delay between the specular and diffuse component (t d/T) where 1/T is the symbol rate. Except for Td/T, all normalized parameters are the ratios of the parameter value and symbol rate. The Doppler frequency depends on the velocity of the vehicle and the carrier frequency. The error probability is computed as a function of the various parameters. The bit error probability is plotted as a function of signal-to-noise ratio per bit and other system parameters
  • Keywords
    error statistics; fading; frequency shift keying; mobile radio systems; probability; satellite relay systems; telecommunication channels; M-ary FSK; M-ary frequency shift keying; Rician envelope; antenna; carrier frequency; correlation function; differential phase detection; diffuse signal; error probability; fading; maximum normalized Doppler frequency; normalized Doppler frequency; normalized frequency deviation; normalized time delay; received signal; satellite mobile channel; signal-to-noise ratio; signal-to-noise ratio per bit; specular signal; symbol rate; symbols; system parameters; vehicle; velocity; white Gaussian noise; Antenna accessories; Delay effects; Error probability; Fading; Frequency shift keying; Gaussian noise; Phase detection; Rician channels; Satellites; Signal to noise ratio;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/25.61333
  • Filename
    61333