A non-terrestrial network (NTN), a term coined by the 3rd Generation Partnership Project (3GPP), refers to a network utilizing airborne or spaceborne payload for communication. The use of NTN has the potential of facilitating providing connectivity to underserved areas. This has motivated the work in 3GPP on evolving the fifth generation (5G) wireless access technology, known as new radio (NR), to support NTN. The broadband opportunities promised by NTN with low Earth orbit (LEO) satellites have attracted much attention, but the performance of LEO NTN using 5G NR has not been well studied. In this paper, we address this gap by analyzing and evaluating the throughput and capacity performance of LEO NTN. The evaluation results show that the downlink capacity of a LEO satellite in S band with 30 MHz bandwidth serving handheld terminal is about 600 Mbps and the downlink capacity of a LEO satellite in Ka band with 400 MHz bandwidth serving very small aperture terminal (VSAT) is about 7 Gbps. For a LEO NTN similar to the Kuiper project proposed by Amazon, we find that, due to the large cell sizes in the LEO NTN, the area capacity density is moderate: 1-10 kbps/km$^2$ in the S band downlink and 14-120 kbps/km$^2$ in the Ka band downlink depending on latitude.
翻译:由第三代伙伴关系项目(3GPP)创建的一个非地球网络(NTN)是一个由第三代伙伴关系项目(3GPP)创建的术语,即非地球网络(NTN),指的是一个利用空载或空载有效载荷进行通信的网络。使用NTN具有促进向服务不足的地区提供连接的潜力。这推动了3GP开发第五代(5G)无线接入技术的工作,称为新无线电台(NRR),以支持NTN。NTN与低地球轨道卫星(LEO)承诺的宽带机会引起了很大的注意,但是没有很好地研究低地NTNTN使用5GNN的性能。在本文件中,我们通过分析和评估低地轨道NTNTN的吞吐量和能力性能来弥补这一差距。评价结果显示,S带的低地轨道卫星,30MHS带带带带带的低地连接能力约为600Mbps,而卡带的低地轨道卫星,400MHS光带终端终端终端终端终端(VSAT)大约7Gbps。对于低地段NTNTNTNQ-10mlink项目,我们发现,由于低地段的密度为14Kmmmmmm/CLELO/CLO/CLM/CLMLM能力,在14KMLMLM。