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Satellite system performance assessment for in-flight entertainment and air traffic control

机译:用于飞行娱乐和空中交通管制的卫星系统性能评估

摘要

Concurrent satellite systems have been proposed for IFE (In-Flight Entertainment) communications, thus demonstrating the capability of satellites to provide multimedia access to users in aircraft cabin. At the same time, an increasing interest in the use of satellite communications for ATC (Air Traffic Control) has been motivated by the increasing load of traditional radio links mainly in the VHF band, and uses the extended capacities the satellite may provide. However, the development of a dedicated satellite system for ATS (Air Traffic Services) and AOC (Airline Operational Communications) seems to be a long-term perspective. The objective of the presented system design is to provide both passenger application traffic access (Internet, GSM) and a high-reliability channel for aeronautical applications using the same satellite links. Due to the constraints in capacity and radio bandwidth allocation, very high frequencies (above 20 GHz) are considered here. The corresponding design implications for the air interface are taken into account and access performances are derived using a dedicated simulation model. Some preliminary results are shown in this paper to demonstrate the technical feasibility of such system design with increased capacity. More details and the open issues will be studied in the future of this research work.
机译:已经提出了用于IFE(空中娱乐)通信的并发卫星系统,从而证明了卫星向机舱内的用户提供多媒体访问的能力。同时,由于主要在VHF频段上增加了传统无线电链路的负担,并且对卫星通信用于ATC(空中交通管制)的兴趣日益浓厚,并且使用了卫星可能提供的扩展容量。但是,开发用于ATS(空中交通服务)和AOC(航空公司运营通信)的专用卫星系统似乎是一个长期的前景。提出的系统设计的目的是为旅客使用同一卫星链路的航空应用提供交通访问(Internet,GSM)和高可靠性通道。由于容量和无线电带宽分配的限制,此处考虑了非常高的频率(20 GHz以上)。考虑到空中接口的相应设计含义,并使用专用的仿真模型得出访问性能。本文显示了一些初步结果,以证明这种系统设计的容量增加的技术可行性。更多细节和未解决的问题将在本研究的未来进行研究。

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