Video transmissions over satellite links are sensitive to signal fades due to rain, especially in the tropics. We performed a video streaming experiment over a satellite link for 24 days distributed over one year to investigate the effects of rain fade. Based on the measurements, models for the relationships between rainfall rate, power level, packet loss, and video quality are proposed. Furthermore, for both uplink and downlink channel, an adaptive closed loop power control algorithm, with a Proportional-Integral-Derivative (PID) controller is designed. This is used for the mitigation of the rain-induced attenuation in order to guarantee a certain level of Quality of Service (QoS) and Quality of Experience (QoE). Simulation results show th...
The literature is poor in the analyses of the effects produced by corrupted bits in compressed video...
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Problem statement: Satellite operations at V band in tropical and equatorial regions are constrained...
Video transmissions over satellite links are sensitive to signal fades because of rain, especially i...
Abstract. In satellite communication the signal fading may reach the maximum in rain weather. In thi...
Tropical countries like Singapore experience high rainfall rate all year round. As such it is essent...
This research identifies how rainfall would affect high-definition video transmitted over satellite....
Satellite technology is shifting to higher frequencies such as Q or V-band to cater to greater bandw...
The main problem that rain causes on satellite links is attenuation. It has been proved by several s...
We assess here the effectiveness of fade mitigation techniques on the user link side of a TLC satel...
Wireless communications systems of all types must deliver reliable connections to the end users to b...
Including: 5 parts. This is the last part. There is a need to understand the impact of rain on the o...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Rain attenuation is an important propagation impairments causes by troposphere which degrades the pe...
Attenuation due to rainfall can severely degrade the FSO links operating under tropical weather. It ...
The literature is poor in the analyses of the effects produced by corrupted bits in compressed video...
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Problem statement: Satellite operations at V band in tropical and equatorial regions are constrained...
Video transmissions over satellite links are sensitive to signal fades because of rain, especially i...
Abstract. In satellite communication the signal fading may reach the maximum in rain weather. In thi...
Tropical countries like Singapore experience high rainfall rate all year round. As such it is essent...
This research identifies how rainfall would affect high-definition video transmitted over satellite....
Satellite technology is shifting to higher frequencies such as Q or V-band to cater to greater bandw...
The main problem that rain causes on satellite links is attenuation. It has been proved by several s...
We assess here the effectiveness of fade mitigation techniques on the user link side of a TLC satel...
Wireless communications systems of all types must deliver reliable connections to the end users to b...
Including: 5 parts. This is the last part. There is a need to understand the impact of rain on the o...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Rain attenuation is an important propagation impairments causes by troposphere which degrades the pe...
Attenuation due to rainfall can severely degrade the FSO links operating under tropical weather. It ...
The literature is poor in the analyses of the effects produced by corrupted bits in compressed video...
A decade ago, the operating frequencies of most available satellites in the tropics were C band, S-b...
Problem statement: Satellite operations at V band in tropical and equatorial regions are constrained...