覆盖范围对飞行平台接收AIS电文的影响

Federico Clazzer, A. Munari, S. Plass, Birgit Suhr
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引用次数: 12

摘要

最近,人们对通过低地球轨道卫星接收自动识别系统(AIS)信息的可能性越来越感兴趣。虽然该原则已被证明是监测海洋和荒地上船只交通的可行选择,但从通信的角度来看,可实现的性能远非最佳。最近,研究表明,通过简单的随机访问方案,可以非常准确地模拟卫星上看到的AIS流量。利用这一结果,在这项工作中,我们提出了一个简单而灵活的分析框架,能够预测信道负载和整体接收性能,同时考虑到船舶的空间分布及其流量产生模式。将船舶航速和位置数据输入到模型中,讨论了一种典型的低空卫星探测AIS数据包的效率。此外,还研究了地面接收器占用空间对整体解码性能的影响,得出了一些关于可能阻止使用窄波束系统的好处的有趣见解。在这个方向上,我们讨论了两种情况:使用带有定向天线的近地轨道卫星进行AIS监测,以及使用客机接收船舶产生的交通的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the impact of coverage range on AIS message reception at flying platforms
In the recent past, an increasing interest has been devoted to the possibility of receiving Automatic Identification System (AIS) messages via Low Earth Orbit (LEO) satellites. While the principle has been demonstrated to be a viable option for monitoring vessel traffic over oceans and vaste land areas, the achievable performance from a communications viewpoint is far from optimal. Recently, it was shown how AIS traffic seen at a satellite can be very accurately modeled resorting to simple random access schemes. Leveraging this result, in this work we propose a simple yet flexible analytical framework capable of predicting channel load and overall reception performance taking into account the spatial distribution of vessels as well as their traffic generation pattern. Feeding the model with ship speed and location data derived from experimental settings, we discuss the achievable efficiency for a typical LEO-satellite detecting AIS packets. Moreover, the impact of the receiver footprint on ground on the overall decoding performance is investigated, deriving some interesting insights on the benefits that could stem resorting to narrower-beam systems. In this direction, we discuss two cases: the usage of a LEO satellite with a directional antenna soon to be launched for AIS monitoring, and the possibility of using airliner for receiving vessel-generated traffic.
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