C & Ku-band satellite communication links are the most commonly used for equatorial satellite communication links. Severe rainfall rate in equatorial regions can cause a large rain attenuation in real compared to the prediction. ITU-R P. 618 standards are commonly used to predict satellite rain fade in designing satellite communication network. However, the prediction of ITU-R is still found to be inaccurate hence hinder a reliable operational satellite communication link in equatorial region. This paper aims to provide an accurate insight by assessment of the monthly C & Ku-band rain fade performance by collecting data from commercial earth stations using C band and Ku-band antenna with 11 m and 13 m diameter respectively. The antennas mea...
Satellite to earth links operating at Ku, Ka, and V bands are strongly attenuated by rain. Rain att...
Future satellite communication systems are moving towards high operational frequencies, typically in...
Abstract- Quantitative analysis and prediction of radio signal attenuation is necessary in order to ...
C & Ku-band satellite communication links are the most commonly used for equatorial satellite commun...
Ku-band have a larger attenuation during heavy rain in the equatorial region. Despite that, Ku-band ...
Future satellite communication (SatCom) systems operating at high frequencies (Ka-band and above) ar...
Reliability of satellite-Earth communication links can be improved by ensuring the availability of a...
Ku-band have a larger attenuation during heavy rain in the equatorial region. Despite that, Ku-band...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Background/Objectives: Researches disclosed rain attenuation prediction models offered by ITU-R seve...
The analyses of rain models for satellite communication links of Ku and Ka bands in Lagos, Nigeria i...
Spectrum congestion in frequencies below 10 GHz is pushing satellite network operators to migrate to...
Satellite communication links at a frequency above 10 GHz experience severe attenuation due to rain,...
This work investigates fade dynamics of satellite communication systems in equatorial heavy rain reg...
This work investigates fade dynamics of satellite communication systems in equatorial heavy rain reg...
Satellite to earth links operating at Ku, Ka, and V bands are strongly attenuated by rain. Rain att...
Future satellite communication systems are moving towards high operational frequencies, typically in...
Abstract- Quantitative analysis and prediction of radio signal attenuation is necessary in order to ...
C & Ku-band satellite communication links are the most commonly used for equatorial satellite commun...
Ku-band have a larger attenuation during heavy rain in the equatorial region. Despite that, Ku-band ...
Future satellite communication (SatCom) systems operating at high frequencies (Ka-band and above) ar...
Reliability of satellite-Earth communication links can be improved by ensuring the availability of a...
Ku-band have a larger attenuation during heavy rain in the equatorial region. Despite that, Ku-band...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Background/Objectives: Researches disclosed rain attenuation prediction models offered by ITU-R seve...
The analyses of rain models for satellite communication links of Ku and Ka bands in Lagos, Nigeria i...
Spectrum congestion in frequencies below 10 GHz is pushing satellite network operators to migrate to...
Satellite communication links at a frequency above 10 GHz experience severe attenuation due to rain,...
This work investigates fade dynamics of satellite communication systems in equatorial heavy rain reg...
This work investigates fade dynamics of satellite communication systems in equatorial heavy rain reg...
Satellite to earth links operating at Ku, Ka, and V bands are strongly attenuated by rain. Rain att...
Future satellite communication systems are moving towards high operational frequencies, typically in...
Abstract- Quantitative analysis and prediction of radio signal attenuation is necessary in order to ...