Carrier‐frequency dependence of the basic transmission loss in tropospheric forward scatter propagation
Author(s) -
Norton Kenneth A.
Publication year - 1960
Publication title -
journal of geophysical research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.67
H-Index - 298
eISSN - 2156-2202
pISSN - 0148-0227
DOI - 10.1029/jz065i007p02029
Subject(s) - frequency dependence , ionosphere , transmission (telecommunications) , forward scatter , transmission loss , troposphere , environmental science , geology , atmospheric sciences , physics , computational physics , geophysics , optics , scattering , telecommunications , computer science , nuclear magnetic resonance
A further interpretation is given of certain Lincoln Laboratory data obtained in an experiment using scaled antennas as published by Bolgiano [1959]. This paper has three objectives: (1) to consider the significance of these data as regards the theory of radio propagation through a turbulent atmosphere; (2) to describe a suitable method for the measurement of the meteorological parameters entering the theory; (3) to apply a further statistical analysis to these data. On the basis of this analysis of the Lincoln Laboratory data, it is concluded (1) that the{ 2 / Γ ( μ ) } ( ρ / 2 ) μ K μ ( ρ )correlation model provides a description of tropospheric turbulence adequate for the description of these data, with μ assigned the fixed value 1, and (2) that the variation of the carrier‐frequency dependence of the basic transmission loss from hour to hour arises simply from a lack of correlation in the hourly median losses on widely separated carrier frequencies rather than from changes of μ in this correlation model.
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