This contribution outlines the scenario of the expected atmospheric impairments, which affect a satellite radio link operating in the W band, as derived by the present theoretical and experimental knowledge. The paper discusses the contributions to signal fade due to gases, clouds, scintillation and rain (with emphasis also on the impact of the hydrometeor size distribution), as well as to the depolarization of the electromagnetic waves. The main objective is to assess the constraints to face in the design of a satellite telecommunication system operating in the W band
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
The utilisation of higher frequency bands above 10 GHz by the satellite industries to provide the ba...
This contribution outlines the scenario of the expected atmospheric impairments, which affect a sate...
This contribution is aimed at presenting the scenario of the expected atmospheric impairments suffer...
This work surveys the atmospheric impairments that affect a satellite link operating in a high-frequ...
Near future satellite and terrestrial telecommunication (TLC) systems are expected to benefit from t...
The prime aspect of this paper is to report the atmospheric impairment effects in wireless communica...
The V and W-bands are becoming of interest to satellite designers due to the large availability of b...
In the framework of the ITALSAT campaign various European institutions carried out propagation meas...
We have presented a picture of the total attenuation to be considered in satellite communication and...
Radio wave propagation plays a very important part in the design and eventually dictates performance...
Radiowave propagation plays a very important part in the design and eventually dictates performance ...
The areas of attention, described in this paper, extend throughout the modern satellite systems. Fut...
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
The utilisation of higher frequency bands above 10 GHz by the satellite industries to provide the ba...
This contribution outlines the scenario of the expected atmospheric impairments, which affect a sate...
This contribution is aimed at presenting the scenario of the expected atmospheric impairments suffer...
This work surveys the atmospheric impairments that affect a satellite link operating in a high-frequ...
Near future satellite and terrestrial telecommunication (TLC) systems are expected to benefit from t...
The prime aspect of this paper is to report the atmospheric impairment effects in wireless communica...
The V and W-bands are becoming of interest to satellite designers due to the large availability of b...
In the framework of the ITALSAT campaign various European institutions carried out propagation meas...
We have presented a picture of the total attenuation to be considered in satellite communication and...
Radio wave propagation plays a very important part in the design and eventually dictates performance...
Radiowave propagation plays a very important part in the design and eventually dictates performance ...
The areas of attention, described in this paper, extend throughout the modern satellite systems. Fut...
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
The utilisation of higher frequency bands above 10 GHz by the satellite industries to provide the ba...