论文标题

平面间的卫星间连通性在密集的狮子座星座中

Inter-Plane Inter-Satellite Connectivity in Dense LEO Constellations

论文作者

Leyva-Mayorga, Israel, Soret, Beatriz, Popovski, Petar

论文摘要

由于私营公司和初创公司拥有的许多正在进行的部署,部署在低地轨道(LEO)中的密集卫星星座将在不久的将来的无线通信中发挥重要作用。此外,第三代伙伴关系项目(3GPP)仍在进行持续的努力,将卫星整合到5G和5G网络中。然而,必须克服许多挑战,以充分利用卫星星座的连通性功能。这些挑战主要是由于部署较低的部署高度,因此单个小型卫星的能力低,其高轨道速度和较小的覆盖范围。特别是,连接来自不同轨道平面的卫星的平面间卫星间链接(ISL)具有极大的动态性,可能会受到多普勒偏移的影响。在本文中,我们提出了一个框架和相应的算法,用于在Leo星座中动态建立平面ISL。我们的结果表明,提出的算法将星座中的速率总和增加115%,而与最新的无干扰环境中的最新基准方案相比,与在最糟糕的案例场景中相比,无干扰环境中的最新基准方案和2)最多增加了71%。

With numerous ongoing deployments owned by private companies and startups, dense satellite constellations deployed in low Earth orbit (LEO) will play a major role in the near future of wireless communications. In addition, the 3rd Generation Partnership Project (3GPP) has ongoing efforts to integrate satellites into 5G and beyond-5G networks. Nevertheless, numerous challenges must be overcome to fully exploit the connectivity capabilities of satellite constellations. These challenges are mainly a consequence of the low capabilities of individual small satellites, along with their high orbital speeds and small coverage due to the low altitude of deployment. In particular, inter-plane inter-satellite links (ISLs), which connect satellites from different orbital planes, are greatly dynamic and may be considerably affected by the Doppler shift. In this paper, we present a framework and the corresponding algorithms for the dynamic establishment of the inter-plane ISLs in LEO constellations. Our results show that the proposed algorithms increase the sum of rates in the constellation 1) by up to 115% with respect to the state-of-the-art benchmark schemes in an interference-free environment and 2) by up to 71% when compared to random resource allocation in a worst-case scenario for interference.

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