• DocumentCode
    1054593
  • Title

    Free Space Optical System Performance for a Gaussian Beam Propagating Through Non-Kolmogorov Weak Turbulence

  • Author

    Toselli, Italo ; Andrews, Larry C. ; Phillips, Ronald L. ; Ferrero, Valter

  • Author_Institution
    Florida Space Inst., Univ. of Central Florida, Orlando, FL
  • Volume
    57
  • Issue
    6
  • fYear
    2009
  • fDate
    6/1/2009 12:00:00 AM
  • Firstpage
    1783
  • Lastpage
    1788
  • Abstract
    Atmospheric turbulence has been described for many years by Kolmogorov´s power spectral density model because of its simplicity. Unfortunately several experiments have been reported recently that show Kolmogorov theory is sometimes incomplete to describe atmospheric statistics properly, in particular in portions of the troposphere and stratosphere. It is known that free space laser system performance is limited by atmospheric turbulence. In this paper we use a non-Kolmogorov power spectrum which uses a generalized exponent instead of constant standard exponent value 11/3 and a generalized amplitude factor instead of constant value 0.033. Using this spectrum in weak turbulence, we carry out, for a Gaussian beam propagating along a horizontal path, analysis of long term beam spread, scintillation, probability of fade, mean signal to noise ratio and mean bit error rate as variation of the spectrum exponent. Our theoretical results show that for alpha values lower than alpha = 11/3, but not for alpha close to alpha = 3, there is a remarkable increase of scintillation and consequently a major penalty on the system performance. However when alpha assumes values close to alpha = 3 or for alpha values higher than alpha = 11/3 scintillation decreases leading to an improvement on the system performance.
  • Keywords
    atmospheric light propagation; atmospheric turbulence; error statistics; laser beams; Gaussian beam propagation; atmospheric statistics; atmospheric turbulence; bit error rate; free space laser system; generalized amplitude factor; horizontal path; long-term beam spread; nonKolmogorov power spectrum; nonKolmogorov weak turbulence; power spectral density model; probability; scintillation; signal-to-noise ratio; Atmospheric modeling; Gaussian noise; Laser modes; Laser theory; Optical propagation; Power system modeling; Signal analysis; Statistics; System performance; Terrestrial atmosphere; Atmospheric turbulence; beam spreading; bit error rate (BER); fade; non Kolmogorov spectrum; scintillation; signal to noise ratio (SNR); structure function;
  • fLanguage
    English
  • Journal_Title
    Antennas and Propagation, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-926X
  • Type

    jour

  • DOI
    10.1109/TAP.2009.2019871
  • Filename
    5062506