In this paper, we review the work of the gateway diversity schemes for Q/V band feeder links for a future HTS system. As each gateway will carry very high capacity, it is essential to ensure very high availabilities for the feeder links, typically greater than 99.9%. In order to do so, spatial diversity is required, since Adaptive Coding and Modulation (ACM) and Uplink Power Control (UPC) are unable to cope with the fade dynamics encountered at these high frequency bands. In an effort to reduce the total number of gateways in the system and to result in a more cost effective system, the concept of Smart gateways has emerged. We first review different architectures implementations and highlight their similarities and differences. We then out...
peer reviewedA main challenge towards realizing the next generation Terabit/s broadband satellite co...
Abstract-A main challenge towards realizing the next generation Terabit/s broadband satellite commun...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
This paper addresses the Smart Gateway diversity scheme to be employed in future High Throughput Sat...
The exploitation of Q/V-band will boost the capacity of High-Throughput Satellites (HTS) but, on the...
Future Satcom systems will be required to provide Internet at high capacity to an increasing number ...
The short-term scenarios of High Throughput Satellite (HTS) systems foresee the exploitation of (cur...
This paper studies the use of W band in a future high throughput satellite (HTS) system alongside th...
High Throughput Satellite systems are expected to reach the milestone of terabit/s capacity in few y...
peer reviewedDesign of high bandwidth and reliable feeder links is central towards provisioning new ...
To reach the terabit per second of throughput, telecommunication satellites cannot make use of frequ...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
Next-generation satellite networks will build on smart gateway diversity (SGD) architectures based o...
peer reviewedA main challenge towards realizing the next generation Terabit/s broadband satellite co...
Abstract-A main challenge towards realizing the next generation Terabit/s broadband satellite commun...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
This paper addresses the Smart Gateway diversity scheme to be employed in future High Throughput Sat...
The exploitation of Q/V-band will boost the capacity of High-Throughput Satellites (HTS) but, on the...
Future Satcom systems will be required to provide Internet at high capacity to an increasing number ...
The short-term scenarios of High Throughput Satellite (HTS) systems foresee the exploitation of (cur...
This paper studies the use of W band in a future high throughput satellite (HTS) system alongside th...
High Throughput Satellite systems are expected to reach the milestone of terabit/s capacity in few y...
peer reviewedDesign of high bandwidth and reliable feeder links is central towards provisioning new ...
To reach the terabit per second of throughput, telecommunication satellites cannot make use of frequ...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...
Next-generation satellite networks will build on smart gateway diversity (SGD) architectures based o...
peer reviewedA main challenge towards realizing the next generation Terabit/s broadband satellite co...
Abstract-A main challenge towards realizing the next generation Terabit/s broadband satellite commun...
peer reviewedExploiting transmit diversity amid a high number of multiple gateways (GW) is a new res...