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Radio holography signal reconstruction and shadow inverse synthetic aperture radar imaging in ground-based forward scatter radar: theory and experimental results

机译:地面前向散射雷达中的无线电全息信号重建和阴影逆合成孔径雷达成像:理论和实验结果

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摘要

The radio hologram signal (RHS) extraction is the pre-condition of shadow inverse synthetic aperture radar (SISAR) imaging in forward scatter radar (FSR). However, for a ground-based FSR imaging system, which usually includes an envelope detection module, it is pretty hard to obtain the complex RHS. Thus a novel method for RHS reconstruction is proposed by considering the relationship between the in-phase part and the orthogonal part. The operation of envelope detection is never combined with segmented Hilbert transform before in RHS reconstruction and detailed skills in applying the method are discussed with simulations. Then, the proposed method is verified through real experimental data processing, of which a metal board and a microbus are regarded as the targets. Furthermore, target profiles via SISAR imaging processing are achieved very well when using the reconstructed RHS.
机译:无线电全息信号(RHS)提取是前向散射雷达(FSR)中的阴影逆合成孔径雷达(SISAR)成像的前提。然而,对于通常包括包络检测模块的基于地面的FSR成像系统,很难获得复杂的RHS。因此,通过考虑同相部分和正交部分之间的关​​系,提出了一种用于RHS重建的新方法。在进行RHS重建之前,从未将包络检测的操作与分段Hilbert变换相结合,并且通过仿真讨论了应用该方法的详细技巧。然后,通过实际的实验数据处理验证了该方法的有效性,其中以金属板和微型客车为目标。此外,当使用重建的RHS时,通过SISAR成像处理获得的目标轮廓非常好。

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