城市环境下合成孔径雷达图像的多径反射率估计

I. de Arriba-Ruiz, F. Pérez-Martínez, J. Muñoz-Ferreras
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引用次数: 4

摘要

合成孔径雷达(SAR)图像具有目标区域反射率函数在多维空间域的距离和交叉距离。SAR合成了一个大孔径雷达,以获得比任何机载真实天线提供的更精细的方位角分辨率。传统的SAR技术假设对来自目标的透射波形进行单一反射。然而,今天的新场景迫使SAR系统在城市环境中工作。因此,在直接散射回波中增加了多次反弹回波。我们把这些称为鬼图像,因为它们模糊了真正的目标图像,导致分辨率差。通过对二次相位误差(QPE)的分析,证明了地球曲率对多径回波离焦程度的影响。除了QPE,其他参数,如集成旁瓣比(ISLR)、峰值旁瓣比(PSLR)、对比度(C)和熵(E)为我们提供了识别包含来自多径的非期望回波的图像中的直接散射回波的工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multipath reflectivity estimation in urban environments for Synthetic Aperture Radar images
Synthetic Aperture Radar (SAR) images a target region reflectivity function in the multi-dimensional spatial domain of range and cross-range. SAR synthesizes a large aperture radar in order to achieve a finer azimuth resolution than the one provided by any on-board real antenna. Conventional SAR techniques assume a single reflection of transmitted waveforms from targets. Nevertheless, today's new scenes force SAR systems to work in urban environments. Consequently, multiple-bounce returns are added to direct-scatter echoes. We refer to these as ghost images, since they obscure true target image and lead to poor resolution. By analyzing the quadratic phase error (QPE), this paper demonstrates that Earth's curvature influences the defocusing degree of multipath returns. In addition to the QPE, other parameters such as integrated sidelobe ratio (ISLR), peak sidelobe ratio (PSLR), contrast (C) and entropy (E) provide us with the tools to identify direct-scatter echoes in images containing undesired returns coming from multipath.
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