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Mismatched filter for analogue TV-based passive bistatic radar

机译:用于基于模拟电视的无源双基地雷达的滤波器不匹配

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This study examines the problem of solving the range ambiguity in analogue TV (ATV)-based passive bistatic radar (PBR). When matched filter (MF) is applied to ATV-based PBR, a range ambiguity at 19.2 km will be produced because of the 64 ms line fly-back time of the ATV signal. The relatively short range and the severity of this ambiguity make application of this type of waveform much more likely to be limited. A novel mismatched filter (MMF) algorithm is developed for solving the problem of range ambiguity. In this new MMF algorithm, the MMF factor is acquired based on minimising the overall impact of the SNR loss (SL) compared to MF and the range sidelobes energy that the authors want to suppress. And a batch version with much computational saving is also introduced. Then the performance of this batch version is studied in detail. Finally, its effectiveness is demonstrated with the application to real data acquired with an experimental PBR system.
机译:本研究探讨了解决基于模拟电视(ATV)的无源双基地雷达(PBR)的距离模糊问题。当将匹配滤波器(MF)应用于基于ATV的PBR时,由于ATV信号的线路回扫时间为64 ms,因此将产生19.2 km的范围模糊度。相对短的范围和这种模糊性的严重性使得这种类型的波形的应用更有可能受到限制。为了解决距离模糊的问题,提出了一种新颖的失配滤波器(MMF)算法。在这种新的MMF算法中,通过将与MF相比的SNR损耗(SL)的总体影响和作者希望抑制的旁瓣能量最小化来获取MMF因子。并且还引入了具有大量计算节省功能的批处理版本。然后详细研究该批处理版本的性能。最后,通过将其应用于实验性PBR系统获取的真实数据,证明了其有效性。

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