Presented in this paper is an empirical model for long-term rain attenuation prediction and statistical prediction of site diversity gain on a slant path. Rain attenuation prediction on a slant path is derived using data collected from tropical regions, and the formula proposed is based on Gaussian distribution. The proposed rain attenuation model shows a considerable reduction in prediction error in terms of standard deviation and root-mean-square (rms) error. The site diversity prediction model is derived as a function of site separation distance, frequency of operation, elevation angle and baseline orientation angle. The novelty of the model is the inclusion of low elevation angles and a high link frequency up to 70 GHz in the ...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The radio waves propagates through the earth atmosphere will be attenuated due to presence of the at...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...
Ensuring site diversity is a fade mitigation technique used to overcome severe rain-induced attenua...
Site diversity is an effective rain attenuation mitigation technique, especially in the tropical reg...
The non-uniformity of rainfall in both the horizontal and vertical directions makes the estimation o...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
Rain is the major impairment to the signal propagation from satellite to earth. The signal that brin...
This paper proposes a model for predicting rain attenuation in the tropical region. Slant path rain ...
An improved method for predicting slant path attenuation in tropical climates is presented in this p...
An improved method for predicting slant path attenuation in tropical climates is presented in this p...
The satellite signal deteriorates as it propagates from the source to the ground antenna on the surf...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
An analytical site diversity model for non-geosynchronous (GSO) systems is presented. The model allo...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The radio waves propagates through the earth atmosphere will be attenuated due to presence of the at...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...
Ensuring site diversity is a fade mitigation technique used to overcome severe rain-induced attenua...
Site diversity is an effective rain attenuation mitigation technique, especially in the tropical reg...
The non-uniformity of rainfall in both the horizontal and vertical directions makes the estimation o...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
Rain is the major impairment to the signal propagation from satellite to earth. The signal that brin...
This paper proposes a model for predicting rain attenuation in the tropical region. Slant path rain ...
An improved method for predicting slant path attenuation in tropical climates is presented in this p...
An improved method for predicting slant path attenuation in tropical climates is presented in this p...
The satellite signal deteriorates as it propagates from the source to the ground antenna on the surf...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
An analytical site diversity model for non-geosynchronous (GSO) systems is presented. The model allo...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The radio waves propagates through the earth atmosphere will be attenuated due to presence of the at...
The signals operating at higher microwave frequency ranges get attenuated in the tropical regions wh...