论文标题

LEO卫星星座中大陆范围内的高效且公平的下行资源分配

Continent-wide Efficient and Fair Downlink Resource Allocation in LEO Satellite Constellations

论文作者

Leyva-Mayorga, Israel, Gala, Vineet, Chiariotti, Federico, Popovski, Petar

论文摘要

低地球轨道(LEO)卫星星座及以后的整合对于实现有效的全球连通性至关重要。由于LEO卫星是具有可预测动态的全球基础架构,因此预先计划的公平和负载均衡的无线电资源分配,以在较大领域提供有效的下行连接,这是一个可实现的目标。在本文中,我们提出了一种带有多个光束的卫星至电池资源分配的分布式和全局最佳算法。这些算法旨在基于连接模式(即注册)的用户数量,将时间频资源和光束分配给电池。我们的分析着重于评估平均每个用户吞吐量,公平性,细胞移交数量和计算复杂性之间的权衡,并在固定单元格的下行链路方案中,从人口图中提取了用户数量。我们的结果表明,两种算法都达到了相似的平均每个用户吞吐量。但是,在所有情况下,全球最佳算法的公平指数超过0.9,这是分布式算法的两倍以上。此外,通过正确设置交换成本参数,相对于不考虑移交成本的情况,可以有效地减少移交数量的70%以上。

The integration of Low Earth Orbit (LEO) satellite constellations into 5G and Beyond is essential to achieve efficient global connectivity. As LEO satellites are a global infrastructure with predictable dynamics, a pre-planned fair and load-balanced allocation of the radio resources to provide efficient downlink connectivity over large areas is an achievable goal. In this paper, we propose a distributed and a global optimal algorithm for satellite-to-cell resource allocation with multiple beams. These algorithms aim to achieve a fair allocation of time-frequency resources and beams to the cells based on the number of users in connected mode (i.e., registered). Our analyses focus on evaluating the trade-offs between average per-user throughput, fairness, number of cell handovers, and computational complexity in a downlink scenario with fixed cells, where the number of users is extracted from a population map. Our results show that both algorithms achieve a similar average per-user throughput. However, the global optimal algorithm achieves a fairness index over 0.9 in all cases, which is more than twice that of the distributed algorithm. Furthermore, by correctly setting the handover cost parameter, the number of handovers can be effectively reduced by more than 70% with respect to the case where the handover cost is not considered.

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