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Synthetic aperture radar raw signal simulation based on inverse chirp scaling algorithm

机译:基于逆线性调频缩放算法的合成孔径雷达原始信号仿真

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摘要

By the analysis of the imaging principle and the raw echo model of synthetic aperture radar (SAR) (Bamler et al., 1992), an efficient simulation method is proposed based on inverse imaging algorithm for SAR raw echo data (Franceschetti et al., 1995). The idea of the inverse imaging algorithm is based on chirp scaling (CS) imaging algorithm called inverse chirp algorithm (ICS) (Xiao and Pi, 2003). It converts the SAR scene greyscale into the confocal and complex image data comprising the continuous phase information, using a scene processing method (Li et al., 1996). Then, a backward method is used. It can inverse and simulate SAR scene raw echo data after azimuth decompression, range decompression and range curvature compression (Khwaja, 2006). Finally, the imaging simulation test is carried out to verify the effectiveness of this method.
机译:通过分析合成孔径雷达(SAR)的成像原理和原始回波模型(Bamler等,1992),提出了一种基于逆成像算法的SAR原始回波数据的有效仿真方法(Franceschetti等, 1995)。逆成像算法的思想是基于线性调频缩放(CS)成像算法,称为反向线性调频算法(ICS)(Xiao and Pi,2003)。它使用场景处理方法将SAR场景灰度转换为包含连续相位信息的共焦和复杂图像数据(Li等,1996)。然后,使用后退方法。在方位角解压缩,范围解压缩和范围曲率压缩之后,它可以反演和模拟SAR场景原始回波数据(Khwaja,2006)。最后,通过成像仿真测试验证了该方法的有效性。

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