Abstract—In this paper, the dynamics of rain attenuation are examined, and dynamic diversity gain is evaluated for a pico-scale site diversity system. Since modern satellite communication systems operate at frequencies above 10GHz, their efficient design requires the adoption of Propagation Impairment Mitigation techniques and so rain attenuation time series synthesizers. For rain attenuation, which is the most dominant fading mechanism, the dynamic stochastic model, proposed by Maseng-Bakken, based on the lognormal distribution is the most widely accepted and used. In this latter model, the dynamic parameter is required for the generation of slant path rain attenuation time series. In this paper, firstly, a simple expression is proposed fo...
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...
Currently, it is estimated that the traffic demand through satellites will be 1 Tbps by 2020 and it ...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
The purpose of this paper is to show how the complementary probability distribution of rain attenuat...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
The site diversity is used to mitigate the rain attenuation on satellite links. The attenuation is e...
Presented in this paper is an empirical model for long-term rain attenuation prediction and statist...
Rain attenuation is an important propagation impairments causes by troposphere which degrades the pe...
A model to scale time series of rain attenuation along an Earth-to-satellite path with variable elev...
The use of Ka and Q/V bands could be a promising solution in order to accommodate higher data rate, ...
Satellite communication links at millimeter wave frequencies can be affected by huge rain attenuatio...
This paper presents a statistical analysis of the rainfall rate and the rain attenuation data on sat...
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...
Currently, it is estimated that the traffic demand through satellites will be 1 Tbps by 2020 and it ...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
The increasing growth of wireless communication systems has caused the usage of higher frequencies i...
The purpose of this paper is to show how the complementary probability distribution of rain attenuat...
Site diversity is a promising technique to overcome severe attenuation on earth–space communication ...
The site diversity is used to mitigate the rain attenuation on satellite links. The attenuation is e...
Presented in this paper is an empirical model for long-term rain attenuation prediction and statist...
Rain attenuation is an important propagation impairments causes by troposphere which degrades the pe...
A model to scale time series of rain attenuation along an Earth-to-satellite path with variable elev...
The use of Ka and Q/V bands could be a promising solution in order to accommodate higher data rate, ...
Satellite communication links at millimeter wave frequencies can be affected by huge rain attenuatio...
This paper presents a statistical analysis of the rainfall rate and the rain attenuation data on sat...
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...
Currently, it is estimated that the traffic demand through satellites will be 1 Tbps by 2020 and it ...