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Ship tracking results from state-of-the-art space-based AIS receiver systems for maritime surveillance

机译:船舶跟踪结果来自最先进的基于空间的AIS接收器系统,用于海上监控

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摘要

Norway currently operates four satellites with Automatic Identification System (AIS) receivers. The first-generation satellites, AISSat-1 and AISSat-2, are equipped with a two-channel, single-antenna AIS receiver, while NorSat-1 and NorSat-2 are equipped with an improved AIS receiver capable of decoding on all four AIS channels and using the two antennas installed on the NorSat satellites. This paper aims to investigate the ship tracking performance enhancement realised by the technology improvements of antenna diversification, frequency diversification, and advanced algorithms. The ship tracking capability of the NorSat satellites is presented and shown to yield a significant improvement, up to a 20% point increase, over the first AISSat generation ship tracking capability. A further 20% point increase is achieved in select areas using frequency diversity introduced in the AIS system since the development of the AISSat satellites. In addition, NorSat-1 detected 34% more vessels than AISSat-2 over the same timeframe. The contribution to the performance improvement from the incremental improvements in decoding algorithms, antenna diversity, and frequency diversity is indicated in the results. The results indicate that, in the short term, upgrading to the latest algorithms, low noise electronics, and taking advantage of antenna diversity is the greatest performance enhancer. In the medium and long term, the frequency diversity likely yields the greatest performance enhancement.
机译:挪威目前通过自动识别系统(AIS)接收器进行四颗卫星。第一代卫星,Aissat-1和Aissat-2配备了双通道,单天线AIS接收器,而Norsat-1和Norsat-2配备有能够在所有四个AIS上解码的改进的AIS接收器通道并使用安装在NorSat卫星上的两个天线。本文旨在调查天线多样化,频率多样化和先进算法技术改进实现的船舶跟踪性能增强。载体卫星的船舶跟踪能力出现并显示出产生显着的改进,在第一个Aissat发货跟踪能力上增加了20%的点增加。在使用AIS卫星的开发以来,使用AIS系统中引入的频率分集来实现进一步的20%点增加。此外,在同一时间框架上,Norsat-1检测到比Aissat-2更多的血管。结果,对解码算法,天线分集和频率分集的增量改进的性能改进的贡献是指出的。结果表明,在短期内,升级到最新算法,低噪声电子设备,以及利用天线分集的优势是最大的性能增强剂。在中长期,频率分集​​可能会产生最大的性能增强。

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