The increasing growth of wireless communication systems has caused the usage of higher frequencies in order to have wider bands. However the increase of frequency will lead to the degradation of satellite communication performance. Rain attenuation is one of the most fundamental reasons of the degrading quality of services. Thus fade mitigation techniques used in order to compensate for excessive attenuation such as diversity protection schemes, power control and adaptive processing techniques. Among these techniques the most efficient is site diversity (SD). In this paper, the effect of SD under the rain conditions, combine both categories for the estimation of slant path rain attenuation and SD gain has been the objective to enhance the e...
Deployment of commercial satellite networks at higher frequency bands such as the Ka and V -band has...
The effect of rain attenuation becomes significant for satellites operating at 10 GHz and above. Th...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
Site diversity technique is effective method to overcome rain attenuation, mostly in the tropics whe...
Rain is the major impairment to the signal propagation from satellite to earth. The signal that brin...
Presented in this paper is an empirical model for long-term rain attenuation prediction and statist...
Site diversity technique is effective method to overcome rain attenuation, mostly in the tropics whe...
Abstract—In this paper, the dynamics of rain attenuation are examined, and dynamic diversity gain is...
The utilization of satellites for communication systems has expanded considerably in recent years. C...
This paper reports a study on mitigation of propagation impairments on Earth–space communication lin...
This paper reports a study on mitigation of propagation impairments on Earth-space communication lin...
The site diversity is used to mitigate the rain attenuation on satellite links. The attenuation is e...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
Rain is the main contributor towards signal attenuation for satellites operating above 3 GHz, and it...
Deployment of commercial satellite networks at higher frequency bands such as the Ka and V -band has...
The effect of rain attenuation becomes significant for satellites operating at 10 GHz and above. Th...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
Site diversity technique is effective method to overcome rain attenuation, mostly in the tropics whe...
Rain is the major impairment to the signal propagation from satellite to earth. The signal that brin...
Presented in this paper is an empirical model for long-term rain attenuation prediction and statist...
Site diversity technique is effective method to overcome rain attenuation, mostly in the tropics whe...
Abstract—In this paper, the dynamics of rain attenuation are examined, and dynamic diversity gain is...
The utilization of satellites for communication systems has expanded considerably in recent years. C...
This paper reports a study on mitigation of propagation impairments on Earth–space communication lin...
This paper reports a study on mitigation of propagation impairments on Earth-space communication lin...
The site diversity is used to mitigate the rain attenuation on satellite links. The attenuation is e...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
Rain is the main contributor towards signal attenuation for satellites operating above 3 GHz, and it...
Deployment of commercial satellite networks at higher frequency bands such as the Ka and V -band has...
The effect of rain attenuation becomes significant for satellites operating at 10 GHz and above. Th...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...