Mobile satellite communications will play a significant role in the next 5th generation mobile services. The use of high-frequency bands will be the enabler of this advancement. However, at high frequencies, excess rain attenuation causes severe signal losses and presents a major threat for the system availability, especially in the tropical region. To that end, this study presents the rain attenuation impact on mobile satellite communications estimated using long-term radar measurements in Malaysia, by exploiting the horizontal structure of rain from the radar database and simulating inner-city and highway mobile terminals scenarios. Additionally, a scaling factor was presented to scale available fixed satellite terminals measurements to m...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The influence of rainfall on radio wave propagation at frequencies above 10 GHz is essential for sat...
Recent advances in satellite communication technologies in the tropical regions have led to signific...
Mobile satellite communications will play a significant role in the next 5th generation mobile servi...
Future satellite mobile communication systems designed for mobile user applications will use extreme...
Many telecommunication systems are going towards high frequencies as such ranges are in great demand...
By increasing number of commercial applications are being promoted for future satellites broadband s...
Attenuation due to rainfall is one of the most fundamental constraints on the performance of satelli...
The campaign to collect rain attenuation data on terrestrial links had commenced in Malaysian tropic...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Due to the lack of reliable analysis in Malaysia as tropical region, this study presents an analysis...
At a frequency range above 5 GHz, rainfall becomes a serious and major source of attenuation for mic...
Satellite communication links at a frequency above 10 GHz experience severe attenuation due to rain,...
Rain is a major source of attenuation for microwave propagation above 10 GHz. In tropical and equato...
Future satellite communication systems are moving towards high operational frequencies, typically in...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The influence of rainfall on radio wave propagation at frequencies above 10 GHz is essential for sat...
Recent advances in satellite communication technologies in the tropical regions have led to signific...
Mobile satellite communications will play a significant role in the next 5th generation mobile servi...
Future satellite mobile communication systems designed for mobile user applications will use extreme...
Many telecommunication systems are going towards high frequencies as such ranges are in great demand...
By increasing number of commercial applications are being promoted for future satellites broadband s...
Attenuation due to rainfall is one of the most fundamental constraints on the performance of satelli...
The campaign to collect rain attenuation data on terrestrial links had commenced in Malaysian tropic...
Satellite communications operating at 10 GHz and above in the tropics suffer severe signal degradati...
Due to the lack of reliable analysis in Malaysia as tropical region, this study presents an analysis...
At a frequency range above 5 GHz, rainfall becomes a serious and major source of attenuation for mic...
Satellite communication links at a frequency above 10 GHz experience severe attenuation due to rain,...
Rain is a major source of attenuation for microwave propagation above 10 GHz. In tropical and equato...
Future satellite communication systems are moving towards high operational frequencies, typically in...
Rain Attenuation can cause significant degradation of signal strength in satellite communication lin...
The influence of rainfall on radio wave propagation at frequencies above 10 GHz is essential for sat...
Recent advances in satellite communication technologies in the tropical regions have led to signific...