论文标题

高吞吐量多光束卫星系统中的关节梁跳和载体聚集

Joint Beam Hopping and Carrier Aggregation in High Throughput Multi-Beam Satellite Systems

论文作者

Kibria, Mirza Golam, Al-Hraishawi, Hayder, Lagunas, Eva, Chatzinotas, Symeon, Ottersten, Björn

论文摘要

梁跳(BH)和载体聚集(CA)是下一代卫星通信系统的两种有前途的技术,可实现系统容量的几个数量级,并显着提高光谱效率。尽管BH允许将提供的能力适应异质需求的灵活性,但CA通过允许其从多个相邻梁上的资源汇总资源来进一步增强用户服务质量(QoS)。在本文中,我们考虑了一种多光束高通量卫星(HTS)系统,该系统与CA结合使用BH来利用两种技术之间的相互作用。特别是,在这项工作中提出并分析了创新的联合BH-CA计划,以利用其个人能力。这包括为BH设计有效的关节时空光束照明模式,以及CA的多用户聚合策略。通过此,通过将关节优化问题作为多目标混合整数线性编程问题(MINLP),同时优化了用户载体分配,发夹填充率,梁跳图和照明持续时间。提供了仿真结果,以证实我们的分析,证明了设计权衡,并指出了拟议的联合BH-CA概念的潜力。在相同的系统情况下,研究并提出了我们的BH-CA计划与常规BH方法的优势与常规BH方法的优势。

Beam hopping (BH) and carrier aggregation (CA) are two promising technologies for the next generation satellite communication systems to achieve several orders of magnitude increase in system capacity and to significantly improve the spectral efficiency. While BH allows a great flexibility in adapting the offered capacity to the heterogeneous demand, CA further enhances the user quality-of-service (QoS) by allowing it to pool resources from multiple adjacent beams. In this paper, we consider a multi-beam high throughput satellite (HTS) system that employs BH in conjunction with CA to capitalize on the mutual interplay between both techniques. Particularly, an innovative joint BH-CA scheme is proposed and analyzed in this work to utilize their individual competencies. This includes designing an efficient joint time-space beam illumination pattern for BH and multi-user aggregation strategy for CA. Through this, user-carrier assignment, transponder filling-rates, beams hopping pattern, and illumination duration are all simultaneously optimized by formulating a joint optimization problem as a multi-objective mixed integer linear programming problem (MINLP). Simulation results are provided to corroborate our analysis, demonstrate the design tradeoffs, and point out the potentials of the proposed joint BH-CA concept. Advantages of our BH-CA scheme versus the conventional BH method without employing CA are investigated and presented under the same system circumstances.

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