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IEEE 802.16j-relay fortified aeromacs networks; benefits and challenges

机译:IEEE 802.16j中继增强型Aeromac网络;好处与挑战

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Aeronautical Mobile Airport Communications System (AeroMACS) is an IEEE 802.16 standard-based (WiMAX) broadband aviation transmission technology, developed to provide safety critical communications coverage for airport surface in support of fixed and mobile ground to ground applications and services. We have previously demonstrated that IEEE 802.16j-amendment-based WiMAX is most feasible for AeroMACS applications. The principal argument in favor of application of IEEE 802.16j technology is the flexible and cost effective extension of radio coverage that is afforded by relay fortified WiMAX networks, with virtually no increase in the power requirements. In this article, following introductory remarks on airport surface communications, WiMAX and AeroMACS; the IEEE 802.16j-based WiMAX technology and multihop relay systems are briefly described. The two modes of relay operation supported by IEEE 802.16j amendment; i.e., transparent (TRS) and non-transparent (NTRS) modes, are discussed in some detail. Advantages and disadvantages of using TRS and NTRS in AeroMACS networks are summarized in a table. Practical issues vis-à-vis the inclusion of relays in AeroMACS networks are addressed. It is argued that the selection of relay type may affect a number of network parameters. A discussion on specific benefits and challenges of inclusion of relays in AeroMACS networks is provided. The article concludes that in case it is desired or necessary to exclusively employ one type of relay mode for all applications throughout an AeroMACS network, the proper selection would be the non-transparent mode.
机译:航空移动机场通信系统(Aeromacs)是一种基于IEEE 802.16标准的(WiMAX)宽带航空传输技术,为机场表面提供了安全关键通信覆盖,以支持固定和移动地面到地面应用和服务。我们之前已经证明了基于IEEE 802.16J的WiMax最可行的Aeromacs应用。支持IEEE 802.16J技术应用的主要论点是通过继电器强化WiMAX网络提供的无线电覆盖的灵活性和成本效益,几乎不会增加电源要求。在本文中,在机场表面通信,WiMAX和Aeromacs上进行了介绍性讲话;简要描述了基于IEEE 802.16J的WiMAX技术和多跳中继系统。 IEEE 802.16J修正案支持的两种中继操作模式;即,在一些细节中讨论透明(TRS)和非透明(NTRS)模式。在桌子中总结了在Aeromacs网络中使用TRS和NTR的优点和缺点。实际问题Vis-is-is纳入Aeromacs网络中的继电器。有人认为,中继类型的选择可能会影响许多网络参数。提供了关于空气摩托网络中包含继电器的具体效益和挑战的探讨。本文得出结论,在需要或必要的情况下专门用于在整个航空摩托网络中的所有应用程序中使用一种类型的中继模式,所以正确的选择将是非透明模式。

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