Developments in HF propagation predictions to support communications with aircraft on trans-polar routes

E. M. Warrington, N. Rogers, A. Stocker, D. Siddle, H. A. Al-behadili, F. Honary, M. Beharrell, D. Boteler, D. Danskin, N. Zaalov
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引用次数: 3

Abstract

Commercial airlines began operations over polar routes in 1999 with a small number of proving flights. By 2014 the number had increased to in excess of 12,000 flights per year, and further increases are expected. For safe operations, the aircraft have to be able to communicate with air traffic control centres at all times. This is achieved by VHF links whilst within range of the widespread network of ground stations, and by HF radio in remote areas such as the Polar regions, the North Atlantic and Pacific where VHF ground infrastructure does not exist. Furthermore, the Russian side of the pole only has HF capability. This has created a demand for improved HF nowcasting and forecasting procedures to support the polar operations, which are the subject of this paper.
高频传播预测的发展,以支持跨极地航线上的飞机通信
商业航空公司于1999年开始在极地航线上运营,并进行了少量的验证飞行。到2014年,这一数字已增加到每年超过12,000个航班,预计还会进一步增加。为了安全操作,飞机必须能够随时与空中交通管制中心通信。这是通过在地面站广泛网络范围内的甚高频链路实现的,以及通过在极地地区、北大西洋和太平洋等不存在甚高频地面基础设施的偏远地区的高频无线电实现的。此外,极点的俄罗斯一侧只有高频能力。这就产生了对改进高频临近预报和预报程序的需求,以支持极地操作,这是本文的主题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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