高度可部署对流层散射系统性能的地理分析

Luis Bastos, H. Wietgrefe
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引用次数: 3

摘要

可运输对流层散射系统是支持北约远征作战的有效超视距传输介质,特别是在提供部署总部之间的增强和/或替代战区内连接方面。在与工业界的合作下,北约通信和信息局(NCI局)一直在对高度可部署的对流层散射系统进行研究和试验。这项活动证实了这些系统对军事应用的适宜性,但也证明了某一BLOS链路的性能与适用气候区的严重依赖。2012年,国际电联无线电通信局(ITU- r)同时发布了新版本的P.617建议书(P.617-2)和新建议书P.2001。建议P.617-2除其他外,规定了适用于对流层散射传播分析的气候带的重新分类,最值得注意的是,第一次规定了确定各种气候带的地理应用的世界地图。P.2001提供了一个频率范围为30兆赫至50千兆赫的通用宽范围地面传播模型,并采用对流层散射子方法。本文将新的对流层散射传播模式和方法与已有的对流层散射传播模式和方法进行了比较分析。然后,使用先前确定的参考对流层散射链路和可部署对流层散射系统的商业实现,对预期对流层散射链路性能进行了理论地理分析。本文为军事通信界提供了新的对流层散射模型的分析和期待已久的对流层散射链路性能的地理分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Geographical Analysis of Highly Deployable Troposcatter Systems Performance
Transportable troposcatter systems are a valid beyond line-of-sight transmission medium in support of NATO Expeditionary Operations, particularly in providing augmentation and/or alternative in-theatre links between deployed headquarters. In cooperation with industry, NATO Communications and Information Agency (NCI Agency) has been conducting research and experimentation in highly deployable troposcatter systems. This activity has validated the suitability of these systems for military applications but also put in evidence the significant dependence of the performance of a given BLOS link with the applicable climate zone. In 2012, the Radiocommunication Bureau of the ITU (ITU-R) simultaneously issued a new version of the P.617 Recommendation (P.617-2) and a new recommendation, P.2001. Recommendation P.617-2 provides, inter alia, a reclassification of the climate zones applicable to troposcatter propagation analyses and, most notably and for the first time, a world map defining the geographical application of the various climate zones. P.2001 offers a general-purpose wide-range terrestrial propagation model in the frequency range 30 MHz to 50 GHz, with a troposcatter sub-method. This paper provides a comparative analysis of the new troposcatter propagation model and methods with the ones previously available. It then presents a theoretical geographical analysis of expected troposcatter link performance using previously identified reference troposcatter links and commercial implementations of deployable troposcatter systems. This paper provides the military communications community with an analysis of the new troposcatter model and a long-awaited geographical distribution of troposcatter link performance.
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