Satellite-enabled LTE systems in LEO constellations

A. Guidotti, A. Vanelli-Coralli, Màrius Caus, J. Bas, G. Colavolpe, T. Foggi, S. Cioni, Andrea Modenini, D. Tarchi
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引用次数: 60

Abstract

LTE-based satellite systems in LEO constellations are a promising solution for extending broadband coverage to areas not connected to a terrestrial infrastructure. However, the large delays and Doppler shifts over the satellite channel pose severe technical challenges to a traditional LTE system. In this paper, two architectures are proposed for a LEO mega-constellation realizing a satellite-enabled LTE system, in which the on-ground LTE entity is either an eNB (Sat-eNB) or a Relay Node (Sat-RN). Focusing on the latter, the impact of large delays and Doppler shifts on LTE PHY/MAC procedures is discussed and assessed. It will be shown that, while carrier spacings, Random Access, and RN attach procedures do not pose specific issues, HARQ requires substantial modifications. Moreover, advanced handover procedures will be also required due to the satellites' movement.
低轨道星座的卫星LTE系统
低轨星座中基于lte的卫星系统是一种很有前途的解决方案,可以将宽带覆盖范围扩展到没有连接到地面基础设施的地区。然而,卫星信道上的大延迟和多普勒频移给传统的LTE系统带来了严峻的技术挑战。本文提出了实现卫星LTE系统的LEO大星座的两种架构,其中地面LTE实体为eNB (Sat-eNB)或中继节点(Sat-RN)。重点是后者,大延迟和多普勒频移对LTE PHY/MAC程序的影响进行了讨论和评估。本文将表明,虽然载波间距、随机存取和RN附加程序不会造成具体问题,但HARQ需要进行大量修改。此外,由于卫星的移动,还需要先进的移交程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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