Cell-Free Massive Non-Terrestrial Networks

Seungnyun Kim;Jiao Wu;Byonghyo Shim;Moe Z. Win
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Abstract

As a means to provide ubiquitous connectivity across the ground-air-space 3D network, low Earth orbit (LEO) satellite mega-constellation systems comprising thousands of LEO satellites have attracted significant interest from both academia and industry recently. One major issue of LEO mega-constellation systems is the frequent handovers between satellites and beams, causing an increase in communication latency and deterioration of quality of service (QoS). In this paper, we propose a user-centric cooperative communication framework for next generation (xG) LEO satellite mega-constellation systems. In the proposed framework, a group of LEO satellites simultaneously serve all the user equipments (UEs) using the same timefrequency resources. By dynamically organizing the clusters of serving satellites and coordinating their joint transmission based on statistical channel state information (CSI), the handover frequency and inter-satellite interference can be reduced effectively, thereby achieving significant enhancements in the spectral efficiency and coverage probability. From the achievable rate analysis and extensive simulations on realistic xG LEO satellite communication environments, we show that the proposed scheme substantially improves the spectral efficiency and coverage over the conventional beam-centric systems.
无蜂窝大规模非地面网络
最近,由数千颗低地球轨道卫星组成的低地球轨道(LEO)卫星巨型星座系统作为一种提供地面-空中-空间三维网络无处不在连接的手段,引起了学术界和工业界的极大兴趣。低轨大星座系统的一个主要问题是卫星和波束之间的频繁切换,导致通信延迟增加和服务质量(QoS)下降。在本文中,我们提出了一个以用户为中心的下一代(xG) LEO卫星大星座系统的协作通信框架。在该框架中,一组低轨道卫星使用相同的时频资源同时为所有用户设备服务。通过基于统计信道状态信息(CSI)动态组织服务卫星群,协调其联合传输,可以有效降低切换频率和星间干扰,从而显著提高频谱效率和覆盖概率。通过可达速率分析和实际xG LEO卫星通信环境的广泛模拟,我们表明,与传统的波束中心系统相比,所提出的方案大大提高了频谱效率和覆盖范围。
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