计算机科学
有效载荷(计算)
通信卫星
带宽(计算)
频道(广播)
吞吐量
卫星
灵活性(工程)
频率分配
实时计算
电子工程
电信
计算机网络
网络数据包
工程类
无线
航空航天工程
数学
统计
作者
X. Alberti,Joan Manuel Cebrian,A. Del Bianco,Zsolt Katona,Lei Jiang,M. A. Vázquez-Castro,A. Zanus,Lin Gilbert,Nader Alagha
标识
DOI:10.1109/asms-spsc.2010.5586902
摘要
Current Ka-band, multi-media satellite systems employ spot beam technology to accommodate a wide range of multi-media type services. These satellites typically employ uniform allocation of RF power and bandwidth to spot beams. Since the traffic distribution tends to be highly asymmetrical and with a high degree of uncertainty, the satellite does not have sufficient flexibility to satisfy the traffic request on a beam per beam basis in an efficient manner. This paper investigates two new candidate multibeam system transmission schemes, namely, the Flexible and Beam-Hoping (BH) scheme, focusing on the forward link. We formulate the system-level optimization and propose an iterative algorithm that always converges given the constraints posed by the payload. The algorithm feeds a detailed system-level simulator which takes into account Ka-band channel and physical layer statistics. Our results show that both candidates outperform the conventional system in terms of both adaptation throughput matching to traffic demands and a more efficient use of available resources. The results were obtained during a project funded by the European Space Agency, with title “Beam Hopping techniques for multibeam satellite systems”.
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