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首页> 外文期刊>IEEE Transactions on Vehicular Technology >Analysis of the Dominant Signal Component of the Air-Ground Channel Based on Measurement Data at C-Band
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Analysis of the Dominant Signal Component of the Air-Ground Channel Based on Measurement Data at C-Band

机译:基于C波段测量数据的空地通道主导信号分量分析

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摘要

Operating remotely piloted aircraft is not imaginable without a continuous data exchange between the air vehicle and the remote pilot. This data exchange requires reliable data links. One approach for such a data link discussed in the community is a terrestrial system deployed in C-band. A good knowledge of the physical conditions of the communication channel, in this case the air-ground/ground-air channel, is indispensable for the development of wireless data links. Therefore we carried out a 50 MHz bandwidth channel sounding campaign with a terrestrial transmitter and an airborne receiver. In this paper we give a detailed description of our campaign setup and the processing of the collected data. The campaign covered several flight scenarios, such as take-off, taxiing, and multiple en-route maneuvers. We furthermore present results on the received power and the amplitude distribution of the dominant component of the received signal for the different flight scenarios. We observed significant drops in reception power during certain maneuvers that need to be considered in the design process of a data link for unmanned aviation. Additionally, we show that the amplitude distribution follows the distributions commonly used in statistical channel modeling of wireless channels to some extent. We finally present parameter sets for multiple flight scenarios for scaling the amplitude distributions to allow a statistical channel modeling of the reception power of the first resolvable signal path.
机译:操作远程驾驶飞机在空气车辆和远程飞行员之间的连续数据交换不可想而知。此数据交换需要可靠的数据链接。社区中讨论的这种数据链路的一种方法是部署在C波段中的地面系统。在这种情况下,对通信通道的物理状况的良好知识,在这种情况下,空地/地面空中通道对于无线数据链路的开发是必不可少的。因此,我们进行了一个50 MHz的带宽通道探测活动,具有陆地发射器和空中接收器。在本文中,我们详细描述了我们的广告系列设置和收集数据的处理。该活动涵盖了几种航班场景,例如起飞,滑行和多次途中的操作。我们此外,对于不同飞行场景的接收信号的主导组件的主要部件的幅度分布,我们还存在结果。在某些机动期间,我们观察到在无人航空数据链路的设计过程中需要考虑的一定机动中的接收力的显着下降。另外,我们表明幅度分布遵循通常用于无线信道的统计信道建模的分布。我们最后向多种飞行场景呈现参数集,用于缩放幅度分布,以允许第一可分辨信号路径的接收功率的统计信道建模。

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