In this letter, the authors present an analytical formulation to evaluate the outage probability of a satellite communication system at an extremely high-frequency band when a macro site diversity scheme is employed to mitigate propagation impairments. In particular, the authors generalize the results for smart gateway diversity configurations, supporting the outage of more than one single gateway station. It was verified that the proposed analytical model has good agreement with numerical results
International audienceIn this paper, we derive the exact outage probability of a hybrid satellite-te...
comprise an emerging communication solution promising to exploit many of the best aspects of terrest...
The future generation of High Throughput Satellite (HTS) for broadband distributed user access is st...
In this letter, the authors present an analytical formulation to evaluate the outage probability of ...
Abstract—A novel model for the outage probability prediction in time diversity satellite communicati...
peer reviewedDesign of high bandwidth and reliable feeder links is central towards provisioning new ...
Currently, it is estimated that the traffic demand through satellites will be 1 Tbps by 2020 and it ...
Future Satcom systems will be required to provide Internet at high capacity to an increasing number ...
The exploitation of Q/V-band will boost the capacity of High-Throughput Satellites (HTS) but, on the...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
Recent research indicates that satellite diversity is a practical means of mitigating the effects o...
This paper explores the network design implications to be taken into account in Smart Gateway Divers...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
The design of High Throughput Satellite (HTS) systems builds on the concept of Smart Gateway Diversi...
International audienceIn this paper, we derive the exact outage probability of a hybrid satellite-te...
comprise an emerging communication solution promising to exploit many of the best aspects of terrest...
The future generation of High Throughput Satellite (HTS) for broadband distributed user access is st...
In this letter, the authors present an analytical formulation to evaluate the outage probability of ...
Abstract—A novel model for the outage probability prediction in time diversity satellite communicati...
peer reviewedDesign of high bandwidth and reliable feeder links is central towards provisioning new ...
Currently, it is estimated that the traffic demand through satellites will be 1 Tbps by 2020 and it ...
Future Satcom systems will be required to provide Internet at high capacity to an increasing number ...
The exploitation of Q/V-band will boost the capacity of High-Throughput Satellites (HTS) but, on the...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
Recent research indicates that satellite diversity is a practical means of mitigating the effects o...
This paper explores the network design implications to be taken into account in Smart Gateway Divers...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
The design of High Throughput Satellite (HTS) systems builds on the concept of Smart Gateway Diversi...
International audienceIn this paper, we derive the exact outage probability of a hybrid satellite-te...
comprise an emerging communication solution promising to exploit many of the best aspects of terrest...
The future generation of High Throughput Satellite (HTS) for broadband distributed user access is st...