Les bandes de fréquences utilisées conventionnellement pour les systèmes fixes de télécommunication par satellites (bandes C et Ku i.e. 4-15 GHz) sont congestionnées. Néanmoins, le marché des télécommunications civil et de défense accuse une demande de plus en plus importante en services multimédia haut-débit. Par conséquent, l'augmentation de la fréquence porteuse vers les bandes Ka et Q/V (20-40/50 GHz)est activement étudiée. Pour des fréquences supérieures à 5 GHz, la propagation des signaux radioélectriques souffre de l'atténuation troposphérique. Parmi les différents contributeurs à l'affaiblissement troposphérique total(atténuation, scintillation, dépolarisation, température de bruit du ciel), les précipitations jouent un rôle prépond...
To compensate propagation impairments on Earth–space communication links, a specific fade mitigation...
The upcoming migration of satellite services to higher bands, namely, the Ka‐ and Q/V‐bands, offers ...
The use of Ka-band is currently the benchmark for High Throughput Satellite (HTS) systems commercial...
Du fait de la congestion des bandes de fréquences conventionnelles (bandes S, C, Ku) et de la nécess...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The first part of this work covers the effect of the troposphere onKa band (20-30 GHz) satellite sig...
In this paper we discuss two propagation elements which are crucial in the design - from both econom...
A rapid growth of new satellite systems utilizing the Ka-band (27 – 40 Ghz) and even higher frequenc...
Propagation impairments produced by the troposphere are a limiting factor for the effective use of t...
In recent years the demand for high data rate satellite links in Earth Observation (EO) missions has...
Communication channels between the Earth and satellites are in the on-going process to be scaled up ...
Near future satellite and terrestrial telecommunication (TLC) systems are expected to benefit from t...
International audienceFade mitigation techniques on Earth-satellite links require the estimation of ...
The project was funded by the EU 6th Framework Programme (FP6) project TWISTER.Multimedia and Videoc...
The ever growing demand for higher data rates in satellite based services along with the congestion ...
To compensate propagation impairments on Earth–space communication links, a specific fade mitigation...
The upcoming migration of satellite services to higher bands, namely, the Ka‐ and Q/V‐bands, offers ...
The use of Ka-band is currently the benchmark for High Throughput Satellite (HTS) systems commercial...
Du fait de la congestion des bandes de fréquences conventionnelles (bandes S, C, Ku) et de la nécess...
The accurate design of earth–space systems requires a comprehensive understanding of the various pro...
The first part of this work covers the effect of the troposphere onKa band (20-30 GHz) satellite sig...
In this paper we discuss two propagation elements which are crucial in the design - from both econom...
A rapid growth of new satellite systems utilizing the Ka-band (27 – 40 Ghz) and even higher frequenc...
Propagation impairments produced by the troposphere are a limiting factor for the effective use of t...
In recent years the demand for high data rate satellite links in Earth Observation (EO) missions has...
Communication channels between the Earth and satellites are in the on-going process to be scaled up ...
Near future satellite and terrestrial telecommunication (TLC) systems are expected to benefit from t...
International audienceFade mitigation techniques on Earth-satellite links require the estimation of ...
The project was funded by the EU 6th Framework Programme (FP6) project TWISTER.Multimedia and Videoc...
The ever growing demand for higher data rates in satellite based services along with the congestion ...
To compensate propagation impairments on Earth–space communication links, a specific fade mitigation...
The upcoming migration of satellite services to higher bands, namely, the Ka‐ and Q/V‐bands, offers ...
The use of Ka-band is currently the benchmark for High Throughput Satellite (HTS) systems commercial...