极光带路径上高频通信的频率探测技术

G. W. Jull, D. Doyle, G. Irvine, J. Murray
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引用次数: 8

摘要

本文的证据表明,系统斜入射信道采样传输对于提高地空高频通信的可靠性是有价值的。这一证据来自空对地无线电通信试验,并辅以新斯科舍省一个地面站在飞行路径上1260海里至极光区纬度的频率探测传输。地面-空气频率探测测量证实,在地磁风暴期间,有很大比例的时间可以通过云层传播极光偶发E。这些模式提供了一种有用的,而且通常是唯一的,在空地路径上的通信模式。为了通过极光E模式进行有效通信,我们发现有必要使用广泛的航空频率选择。此外,由于高频传播条件的快速变化,发现在每个频率分配上每五分钟更新一次信道采样测量是可取的。可以确定的是,这种在干扰期间选择工作频率的程序导致的通信可靠性明显高于单独采用其他频率选择技术所获得的可靠性。
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Frequency Sounding Techniques for HF Communications over Auroral Zone Paths
This paper presents evidence that systematic oblique incidence channel sampling transmissions are valuable for improving the reliability of air-ground HF communications when propagation conditions are marginal. This evidence results from air-ground radio communications trials supplemented by frequency sounding transmissions over flight paths of up to 1260 nautical miles into auroral zone latitudes from a ground station in Nova Scotia. The ground-air frequency sounding measurements established that propagation via clouds of auroral sporadic E was possible for a high percentage of time during geomagnetic storms. These modes provided a useful, and often the only, mode for communications over the air-ground path. In order to communicate effectively via auroral E modes, it was found necessary to use a wide selection of aeronautical frequencies. In addition, because of the rapid variation in HF propagation conditions, it was found desirable to renew channel sampling measurements once every five minutes on each frequency assignment. It was established that this procedure for the selection of operating frequencies during disturbances resulted in communications reliability that was appreciably higher than would have been obtained if other frequency selection techniques, alone, were followed.
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