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Processing of Synthetic Aperture Radar Data Using Frequency Modulated Signals

机译:使用频率调制信号处理合成孔径雷达数据

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摘要

The main objective of Synthetic Aperture Radar (SAR) processing is converting the raw acquired data into pixels in the final processed image. The signal is spread in the range and azimuth directions, and the signal migrates to other range cells. Range Doppler Algorithm (RDA) is the most widely applied algorithm in SAR data processing. It performs range compression followed by azimuth compression to form the final reconstructed image. Unfortunately, SAR images suffer from many imperfections that will be studied and analyzed in this paper. Firstly, range compression introduces sidelobes that reduce the Signal-to-Noise Ratio (SNR). For this case, a comparison between three configurations of frequency modulated signals is presented. Moreover, the channel effect that causes degradations in the received signals is investigated and regularized de-convolution is used to reduce this effect. Finally, the random noise that causes a pixel-to-pixel variation and appears as a granular noise in the image will be reduced by applying a median filter to the reconstructed image.
机译:合成孔径雷达(SAR)处理的主要目的是将原始获取数据转换为最终处理图像中的像素。信号在范围和方位方向上扩展,并且信号迁移到其他范围单元。范围多普勒算法(RDA)是SAR数据处理中最广泛应用的算法。它执行范围压缩,后跟方位角压缩,形成最终的重建图像。不幸的是,SAR图像遭受许多缺陷,将在本文中进行和分析。首先,范围压缩引入了降低信噪比(SNR)的侧瓣。在这种情况下,呈现了频率调制信号的三种配置之间的比较。此外,研究了在接收信号中导致降低的信道效应,并使用规则的去卷积来减少这种效果。最后,通过将中值滤波器应用于重建的图像,减小导致像素到像素变化的随机噪声作为图像中的粒度噪声。

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