Four-dimensional network simulation of direct air to ground LTE networks

Mitsuo Sakamoto, Shohei Kawato
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引用次数: 2

Abstract

In recent times in-flight Broadband Internet connection service is becoming more common. In Japan, most in-flight connectivity utilizes a satellite backhaul system. However, the satellite system tends to be very bulky and expensive for short-and medium-haul continental flights. The satellite system has limited capacity, especially serving a large number of continental aircraft in a limited geographical area. This, it produces a large transmission latency, that affects the real-time service quality. The solution is a Direct Air-to-Ground (DA2G) network based on Long Term Evolution (LTE) technology. The DA2G network deploys ground stations that are connected with aircraft flying overhead, thus providing an ultra-broadband backhaul infrastructure. The European Conference of Postal and Telecommunications Administrations (CEPT) has explored the potential of DA2G networks based on LTE with pencil beamforming in an attempt to improve the link performance. Here, based on the CEPT reports, this paper discusses the broadcasting and traffic channel coverage without pencil beamforming to keep the compatibility of conventional LTE. In addition, a hierarchical antenna architecture is proposed for covering all flight cruising altitudes of 4,000 - 12,000 m using conventional LTE. Moreover, a four-dimensional network simulation of DA2G LTE networks is introduced. The merits of the proposed antenna architecture are verified using a developed four-dimensional network simulator.
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直接空对地LTE网络的四维网络仿真
近年来,机上宽带互联网连接服务越来越普遍。在日本,大多数机上连接使用卫星回程系统。然而,对于中短途大陆航班来说,卫星系统往往非常笨重和昂贵。卫星系统的能力有限,特别是在有限的地理区域内为大量大陆飞机提供服务。这样会产生较大的传输时延,影响实时业务质量。该解决方案是基于长期演进(LTE)技术的直接空对地(DA2G)网络。DA2G网络部署与头顶飞行的飞机相连的地面站,从而提供超宽带回程基础设施。欧洲邮政和电信管理局会议(CEPT)已经探索了基于LTE的DA2G网络的潜力,并采用铅笔波束形成,试图提高链路性能。本文在CEPT报告的基础上,讨论了无铅笔波束形成的广播信道和业务信道覆盖,以保持传统LTE的兼容性。此外,提出了一种覆盖4000 ~ 12000 m飞行巡航高度的分层天线结构。此外,还介绍了DA2G LTE网络的四维网络仿真。利用开发的四维网络模拟器验证了所提出的天线结构的优点。
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