A Hybrid Beamforming Design for Massive MIMO LEO Satellite Communications

J. Palacios, N. González-Prelcic, C. Mosquera, Takayuki Shimizu, Chang-Heng Wang
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引用次数: 18

Abstract

5G and future cellular networks intend to incorporate low earth orbit (LEO) satellite communication systems (SatCom) to solve the coverage and availability problems that cannot be addressed by satellite-based or ground-based infrastructure alone. This integration of terrestrial and non terrestrial networks poses many technical challenges which need to be identified and addressed. To this aim, we design and simulate the downlink of a LEO SatCom compatible with 5G NR, with a special focus on the design of the beamforming codebook at the satellite side. The performance of this approach is evaluated for the link between a LEO satellite and a mobile terminal in the Ku band, assuming a realistic channel model and commercial antenna array designs, both at the satellite and the terminal. Simulation results provide insights on open research challenges related to analog codebook design and hybrid beamforming strategies, requirements of the antenna terminals to provide a given SNR, or required beam reconfiguration capabilities among others.
大规模MIMO LEO卫星通信的混合波束形成设计
5G和未来的蜂窝网络打算整合低地球轨道(LEO)卫星通信系统(SatCom),以解决仅靠卫星或地面基础设施无法解决的覆盖和可用性问题。这种地面和非地面网络的整合带来了许多技术挑战,需要加以确定和解决。为此,我们设计并模拟了兼容5G NR的LEO卫星通信下行链路,并特别关注了卫星侧波束形成码本的设计。本文对低轨道卫星和Ku波段移动终端之间的链路进行了性能评估,假设在卫星和终端上都有一个真实的信道模型和商用天线阵列设计。仿真结果提供了与模拟码本设计和混合波束形成策略、天线终端提供给定信噪比的要求或所需波束重构能力等相关的开放研究挑战的见解。
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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