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Enhanced GNSS-SAR Range-Doppler Algorithm for The Target Detection of Weak Reflected Signals: An Experimental Study

机译:增强的GNSS-SAR范围 - 多普勒算法用于弱反射信号的目标检测:实验研究

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摘要

A new tool for remote sensing GNSS-SAR is developing recently. However, due to the limitation of narrow signal band of GNSS signals, images generated by GNSS-SAR are much noisy and with low azimuth resolution, particularly when reflected GNSS signals are weak. Due to the issue, a new algorithm is proposed for target detection based on the Range-Doppler algorithm in this paper. Firstly, according to the analysis of the average SNR (signal-to-noise ratio) of the received reflected signal, optimal threshold and range correlation duration are derived for detecting range compressed signal. Thereafter by properly scaling the detected range compressed signals along azimuth domain, we can further enhance the SNR along specified azimuth direction. Thus, when conducting azimuth processing, the azimuth resolution can be improved. In the paper, the new algorithms will be described and the experiment results will be presented.
机译:最近的遥感GNSS-SAR的新工具最近正在开发。 然而,由于GNSS信号的窄信号频带的限制,GNSS-SAR产生的图像很大噪声,并且具有低方位角分辨率,特别是当反射的GNS信号较弱时。 由于问题,提出了一种基于本文范围 - 多普勒算法的目标检测的新算法。 首先,根据接收的反射信号的平均SNR(信噪比)的分析,导出用于检测范围压缩信号的最佳阈值和范围相关持续时间。 此后,通过沿方位角域正确缩放检测到的范围压缩信号,我们可以进一步增强沿指定方位方向的SNR。 因此,当进行方位角处理时,可以提高方位角分辨率。 在本文中,将描述新算法,并将呈现实验结果。

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