WiMAX在交通要求苛刻的电子战空中演习精英2008

Luis Bastos, H. Wietgrefe
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引用次数: 7

摘要

混合扩展模块(HEM)原型实现了北约C3机构(NC3A)概念,用于支持北约反应部队(NRF)和远征作战的未来可部署总部通信基础设施。它利用由ip融合无线(WiMAX)和有线(光纤)解决方案组成的混合传输系统。2008年,NC3A改进了HEM原型机的许多方面,并将其部署到国际电子战空中演习ELITE 2008。该演习提出了一个特别苛刻的场景,涉及重大的非对称实时流量、远程无线电链路阻塞和受污染的无线电频率环境,HEM原型机最初并没有针对这些环境进行定制。实验的重点是从无线电性能、干扰敏感性、宽带容量以及配置和部署灵活性等不同角度对WiMAX性能进行测试。本文介绍了ELITE 2008的情景和挑战。它指出了对HEM原型执行的改进,以匹配操作需求。然后介绍了在ELITE演习区域的实际部署情况,并重点介绍了对WiMAX系统进行的最相关的测试。获得的结果证明了WiMAX作为可部署总部通信的无线传输技术的有效性,因为它能够灵活地适应苛刻的军事场景,具有抗干扰性,并且在次优条件下具有出色的无线电性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
WiMAX at traffic-demanding electronic warfare air exercise ELITE 2008
The Hybrid Extension Module (HEM) Prototype implements a NATO C3 Agency (NC3A) concept for future Deployable Headquarter communications infrastructure in support of NATO Response Force (NRF) and Expeditionary Operations. It makes use of a hybrid transmission system composed of IP-converged wireless (WiMAX) and wired (fiber optics) solutions. In 2008, NC3A improved many aspects of the HEM Prototype and deployed it to the international electronic warfare air exercise ELITE 2008. This exercise posed a particularly demanding scenario involving significant asymmetric real-time traffic, long-range obstructed radio links, and a polluted radio frequency environment, for which the HEM Prototype was not initially tailored. The focus of the experiment was on WiMAX performance from different angles: radio performance, interference susceptibility, broadband capacity, and configuration and deployment flexibility. This paper introduces the scenario and challenges posed by ELITE 2008. It addresses the improvements performed to the HEM Prototype to match the operational requirements. It then describes the actual deployment to the ELITE exercise area and focuses on the most relevant tests performed to the WiMAX system. Results obtained put in evidence the validity of WiMAX as a wireless transmission technology for deployable headquarter communications, due to its flexibility in adapting to demanding military scenarios, its resistance to interference, and its remarkable radio performance under sub-optimal conditions.
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