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On proper selection of multihop relays for future enhancement of AeroMACS networks

机译:On proper selection of multihop relays for future enhancement of AeroMACS networks

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As the Aeronautical Mobile Airport Communications System (AeroMACS) has evolved from a technology concept to a deployed communications network over major US airports, it is now time to contemplate whether the existing capacity of AeroMACS is sufficient to meet the demands set forth by all fixed and mobile applications over the airport surface given the AeroMACS constraints regarding bandwidth and transmit power. The underlying idea in this article is to present IEEE 802.16j-based WiMAX as a technology that can address future capacity enhancements and therefore is most feasible for AeroMACS applications. The principal argument in favor IEEE 802.16j technology is the flexible and cost effective extension of radio coverage that is afforded by relay fortified networks, with virtually no increase in the power requirements and virtually no rise in interference levels to co-allocated applications. The IEEE 802.16j-based multihop relay systems are briefly described. The focus is on key features of this technology, frame structure, and its architecture. Next, AeroMACS is described as a WiMAX-based wireless network. The two major relay modes supported by IEEE 802.16j amendment, i.e., transparent and non-transparent are described. The benefits of employing multihop relays are listed. Some key challenges related to incorporating relays into AeroMACS networks are discussed. The selection of relay type in a broadband wireless network affects a number of network parameters such as latency, signal overhead, PHY and MAC layer protocols, consequently it can alter key network quantities of throughput and QoS.
机译:随着航空移动机场通信系统(航空航空航天)已经从技术概念演变为在美国主要机场的部署通信网络中,现在是时候考虑了现有的航空收割机容量足以满足全部固定的要求在机场表面上的移动应用给出了有关带宽和发射功率的机场约束。本文的潜在想法是将基于IEEE 802.16J的WiMAX作为一种能够解决未来容量增强的技术,因此最可行的Aeromacs应用。关于IEEE 802.16J技术的主要论点是Relay强化网络所提供的无线电覆盖的灵活性和经济效益的延伸,并且功率要求几乎不会增加,并且干扰水平几乎没有增加共同分配的应用。简要描述了基于IEEE 802.16J的多跳中继系统。重点是本技术,框架结构及其体系结构的关键特征。接下来,Aeromacs被描述为基于WiMAX的无线网络。描述了IEEE 802.16J修正案,即透明和非透明支持的两个主要继电器模式。列出了采用多跳继电器的好处。讨论了与将继电器结合到航空围栏网络中相关的一些关键挑战。宽带无线网络中的继电器类型的选择会影响许多网络参数,例如延迟,信号开销,PHY和MAC层协议,因此它可以改变吞吐量和QoS的关键网络数量。

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