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Improved Reconstruction of Radio Holographic Signal for Forward Scatter Radar Imaging

机译:用于前向散射雷达成像的无线电全息信号的改进重建

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Forward scatter radar (FSR), as a specially configured bistatic radar, is provided with the capabilities of target recognition and classification by the Shadow Inverse Synthetic Aperture Radar (SISAR) imaging technology. This paper mainly discusses the reconstruction of radio holographic signal (RHS), which is an important procedure in the signal processing of FSR SISAR imaging. Based on the analysis of signal characteristics, the method for RHS reconstruction is improved in two parts: the segmental Hilbert transformation and the reconstruction of mainlobe RHS. In addition, a quantitative analysis of the method’s applicability is presented by distinguishing between the near field and far field in forward scattering. Simulation results validated the method’s advantages in improving the accuracy of RHS reconstruction and imaging.
机译:作为特殊配置的双基地雷达,前向散射雷达(FSR)通过阴影逆合成孔径雷达(SISAR)成像技术提供了目标识别和分类的功能。本文主要讨论了无线电全息信号(RHS)的重建,这是FSR SISAR成像信号处理中的重要过程。在分析信号特征的基础上,对RHS重建方法进行了两部分改进:分段希尔伯特变换和主瓣RHS重建。另外,通过区分前向散射中的近场和远场,对该方法的适用性进行了定量分析。仿真结果验证了该方法在提高RHS重建和成像精度方面的优势。

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