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Maritime Moving Target Long Time Integration for GNSS-Based Passive Bistatic Radar

机译:基于GNSS的无源双基地雷达的海上移动目标长时间集成

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This paper addresses the exploitation of Global Navigation Satellite Systems (GNSS) as transmitters of opportunity in passive bistatic radar systems for maritime surveillance. The main limitation of this technology is the restricted power budget provided by navigation satellites, which makes it necessary to define innovative moving target detection techniques specifically tailored for the system under consideration. To this aim, this paper puts forward long integration time techniques able to collect the signal energy over long time intervals (tens of seconds), allowing the retrieval of suitable levels of signal-to-disturbance ratios for detection purposes. A local plane based technique is first considered, providing target detection in a plane that represents the section of maritime area covered by the radar antenna. As a suboptimum solution in terms of achievable integration gain, but more efficient from a computational point of view, a second technique is considered working in the conventional bistatic range and Doppler plane (basic plane based). Results against synthetic and experimental datasets show the effectiveness of the proposed techniques.
机译:本文探讨了利用全球导航卫星系统(GNSS)作为无源双基地雷达系统中用于海上监视的机会发射机的问题。该技术的主要局限性在于导航卫星提供的功率预算有限,因此有必要定义专门针对正在考虑的系统量身定制的创新运动目标检测技术。为此,本文提出了长积分时间技术,该技术能够在很长的时间间隔(数十秒)内收集信号能量,从而允许出于检测目的而检索合适的信噪比水平。首先考虑一种基于局部平面的技术,该技术在代表雷达天线覆盖的海域截面的平面中提供目标检测。作为可实现的积分增益的次优解决方案,但从计算角度来看效率更高,第二种技术被认为是在常规双基地范围和多普勒平面(基于基本平面)中工作。针对合成和实验数据集的结果表明了所提出技术的有效性。

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