The F2-layer peak density height hmF2 is one of the most important ionospheric parameters characterizing HF propagation conditions. Therefore, the ability to model and predict the spatial and temporal variations of the peak electron density height is of great use for both ionospheric research and radio frequency planning and operation. For global hmF2 modelling we present a nonlinear model approach with 13 model coefficients and a few empirically fixed parameters. The model approach describes the temporal and spatial dependencies of hmF2 on global scale. For determining the 13 model coefficients, we apply this model approach to a large quantity of global hmF2 observational data obtained from GNSS radio occultation measurements onbo...
International audienceThe diurnal, seasonal, and solar activity variations of the ionogram derived s...
In this study, the relation of the maximum ionization height (HmF2) and the critical frequency (FoF2...
Understanding the physical processes within the ionosphere is a key requirement to improve and exte...
The ionospheric F2 region around the peak density height hmF2 of about 250 – 500 km causes the most ...
The height, hmF2, and the electron density, NmF2, of the F2 peak are key model parameters to charact...
The F2 layer of the ionosphere plays an essential role in radio communication and positioning applic...
To facilitate F2-layer peak density (NmF2) modeling, a nonlinear polynomial model approach based on ...
The F2 layer of the ionosphere plays an essential role in radio communication and positioning applic...
F2-layer is the most important and characteristic layer of the ionosphere in the propagation of high...
F2-layer is the most important and characteristic layer of the ionosphere in the propagation of high...
Cataloged from PDF version of article.F2-layer is the most important and characteristic layer of the...
High frequency (HF) electromagnetic wave propagation is commonly used in long-distance communication...
Electron density profiles (EDPs) derived from GNSS radio occultation (RO) measurements provide valua...
Ionosonde measurements obtained at Tucuman are used to check the validity of the International Refer...
International audienceSpace weather effects can strongly influence high-frequency (HF) communication...
International audienceThe diurnal, seasonal, and solar activity variations of the ionogram derived s...
In this study, the relation of the maximum ionization height (HmF2) and the critical frequency (FoF2...
Understanding the physical processes within the ionosphere is a key requirement to improve and exte...
The ionospheric F2 region around the peak density height hmF2 of about 250 – 500 km causes the most ...
The height, hmF2, and the electron density, NmF2, of the F2 peak are key model parameters to charact...
The F2 layer of the ionosphere plays an essential role in radio communication and positioning applic...
To facilitate F2-layer peak density (NmF2) modeling, a nonlinear polynomial model approach based on ...
The F2 layer of the ionosphere plays an essential role in radio communication and positioning applic...
F2-layer is the most important and characteristic layer of the ionosphere in the propagation of high...
F2-layer is the most important and characteristic layer of the ionosphere in the propagation of high...
Cataloged from PDF version of article.F2-layer is the most important and characteristic layer of the...
High frequency (HF) electromagnetic wave propagation is commonly used in long-distance communication...
Electron density profiles (EDPs) derived from GNSS radio occultation (RO) measurements provide valua...
Ionosonde measurements obtained at Tucuman are used to check the validity of the International Refer...
International audienceSpace weather effects can strongly influence high-frequency (HF) communication...
International audienceThe diurnal, seasonal, and solar activity variations of the ionogram derived s...
In this study, the relation of the maximum ionization height (HmF2) and the critical frequency (FoF2...
Understanding the physical processes within the ionosphere is a key requirement to improve and exte...