论文标题
关节梁的放置和负载平衡优化针对非震荡卫星系统
Joint Beam Placement and Load Balancing Optimization for Non-Geostationary Satellite Systems
论文作者
论文摘要
通过用户位置,通过生成多个放置在地面上的斑点,非对位(非GSO)卫星星座已成为一种有前途的解决方案,以实现无处不在的高速低延迟宽带服务。但是,活动梁的数量与产生大量光束的复杂性之间存在固有的权衡。本文制定并解决了关节梁的位置和负载平衡问题,以仔细优化卫星梁,并以最少的活动光束数量增强链接预算。我们提出了一种两阶段的算法设计,以克服在多项式时间内提供解决方案的考虑优化问题的组合结构。第一阶段可以最大程度地减少活动梁的数量,而第二阶段则执行负载平衡,以在活动梁的覆盖范围内分配用户。数值结果证实了所提出的方法在载体与噪声比率方面的好处,并且每光束都比其他基准测试了。
Non-geostationary (Non-GSO) satellite constellations have emerged as a promising solution to enable ubiquitous high-speed low-latency broadband services by generating multiple spot-beams placed on the ground according to the user locations. However, there is an inherent trade-off between the number of active beams and the complexity of generating a large number of beams. This paper formulates and solves a joint beam placement and load balancing problem to carefully optimize the satellite beam and enhance the link budgets with a minimal number of active beams. We propose a two-stage algorithm design to overcome the combinatorial structure of the considered optimization problem providing a solution in polynomial time. The first stage minimizes the number of active beams, while the second stage performs a load balancing to distribute users in the coverage area of the active beams. Numerical results confirm the benefits of the proposed methodology both in carrier-to-noise ratio and multiplexed users per beam over other benchmarks.