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A Modified Three-Step Algorithm for TOPS and Sliding Spotlight SAR Data Processing

机译:改进的TOPS和滑动聚光SAR数据处理三步算法

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摘要

There are two challenges for efficient processing of both the sliding spotlight and terrain observation by progressive scans (TOPS) data using full-aperture algorithms. First, to overcome the Doppler spectrum aliasing, zero-padding is required for azimuth up sampling, increasing the computation burden; second, the azimuth deramp operation for avoiding synthetic aperture radar (SAR) image folding leads to azimuth time shift along the range dimension, and in turn the appearance of ghost targets and azimuth resolution reduction at the scene edge, especially in the wide-swath case. In this paper, a novel three-step algorithm is proposed for processing the sliding spotlight and TOPS data. In the first step, a modified derotation is derived in detail based on the chirp z-transform (CZT), avoiding zero-padding; then, the chirp scaling algorithm kernel is adopted for precise focusing in the second step; and in the third step, instead of the traditional range-independent deramp, a range-dependent deramp is applied to compensate for the time shift. Moreover, the SAR image geometry distortion caused by range-dependent deramp is corrected by employing a range-dependent CZT. Experimental results based on both simulated data and real data are provided to validate the proposed algorithm.
机译:通过使用全光圈算法的逐行扫描(TOPS)数据有效地处理滑动聚光灯和地形观察,存在两个挑战。首先,为了克服多普勒频谱混叠,方位向上采样需要零填充,从而增加了计算负担。其次,为避免合成孔径雷达(SAR)图像折叠而进行的方位角去极化操作会导致沿距离维度的方位角时间偏移,进而导致虚假目标的出现和场景边缘的方位角分辨率降低,尤其是在广角情况下。本文提出了一种新颖的三步算法来处理滑动聚光灯和TOPS数据。第一步,基于线性调频z变换(CZT)详细推导修改后的反旋转,避免零填充。然后,在第二步中采用线性调频缩放算法内核进行精确聚焦。第三步,代替传统的与范围无关的deramp,而是采用与范围无关的deramp来补偿时移。此外,通过采用与距离有关的CZT,可以校正由与距离有关的deramp引起的SAR图像几何失真。提供了基于仿真数据和真实数据的实验结果,以验证所提出的算法。

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