Forward-scatter Doppler-only commercial airliner tracking

Miika Tolonen, Piotr Ptak, Juha Hartikka, Mauno Ritola, A. Ludvig, Matti Korhonen, T. Kauranne
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引用次数: 4

Abstract

Appearance of tragedies like the lost flight MH370 should be eliminated or reduced and in this paper a technique based on the Doppler shift of radio sources of opportunity is suggested as an alternative technique of tracking aircraft. Such systems are based on simultaneous analysis of the Doppler shift caused by aircraft moving with respect to multiple radio signal sources and network of receivers. One of the aspects of the technique is extraction of Doppler signatures from within spectrogram, for which a robust technique was developed and tested with a variety of different weather and terrain conditions and antenna configurations. The system was able to trace 73% of observed Doppler signatures. Among testing sessions one particular situation in which aircraft is beyond the visible horizon or over-thehorizon (OTH) was analysed with respect to capability of aircraft tracking with the transmitting-receiving network. Such radar system is designed as combination of peer to peer and server side protocols for exchanging information on Doppler shift and aircraft location, respectively. The multistatic configuration of the radar system is built out of three receiving and three transmitting stations located in south east part of Finland and adjoined part of Russian Federation. The efficiency and precision of the tracking system was estimated to OTH visibility and equaled 420km and 1500m, respectively. The precision of the tracking system was verified with reference data based on Automatic dependent surveillance - broadcast (ADS-B) information.
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只有前向散射多普勒的商业客机跟踪
应该消除或减少像MH370航班失踪这样的悲剧的出现,本文提出了一种基于无线电机会源的多普勒频移技术作为跟踪飞机的替代技术。这种系统是基于对飞机相对于多个无线电信号源和接收机网络移动所引起的多普勒频移的同时分析。该技术的一个方面是从频谱图中提取多普勒特征,为此开发了一种强大的技术,并在各种不同的天气、地形条件和天线配置下进行了测试。该系统能够追踪73%的观测到的多普勒信号。在测试阶段中,分析了飞机在可见视界之外或视界以上(OTH)的特定情况下使用收发网络跟踪飞机的能力。这种雷达系统被设计为点对点协议和服务器端协议的组合,分别用于交换多普勒频移和飞机位置信息。该雷达系统的多基地配置由位于芬兰东南部和俄罗斯联邦毗邻部分的三个接收站和三个发射站组成。估计跟踪系统的效率和精度分别达到OTH能见度420公里和1500米。利用基于ADS-B信息的参考数据验证了跟踪系统的精度。
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