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Precise Focusing of Airborne SAR Data With Wide Apertures Large Trajectory Deviations: A Chirp Modulated Back-Projection Approach

机译:宽孔径大轨迹偏差的机载SAR数据的精确聚焦:线性调频调制的反投影方法

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摘要

In the area of airborne synthetic aperture radar (SAR), motion compensation (MOCO) is a crucial technique employed to correct the SAR data affected by nonlinear platform trajectory during data acquisition. Due to range-azimuth coupling and computational burden consideration, some approximations, which are valid for SAR systems of moderate aperture length, are usually adopted in commonly used MOCO approaches. However, a much more accurate SAR data processing approach is appealing to process the low-frequency SAR systems with large aperture length, such as P-band. In this paper, a new MOCO approach with high precision and high efficiency is proposed. After the processing and the range-dependent MOCO, the analytical expression of a 2-D spectrum of a partially focused SAR image is given. Afterward, aperture reduction is achieved by a chirp modulation technique. Finally, with high precision and less computation cost, back projection along the new built short apertures (affected by the residual motion errors) is employed to yield a fairly well-focused SAR image. Experimental results on simulated and actual P-band SAR data are presented to verify the performance of the proposed approach.
机译:在机载合成孔径雷达(SAR)领域,运动补偿(MOCO)是一项关键技术,用于校正在数据采集过程中受到非线性平台轨迹影响的SAR数据。由于距离-方位角耦合和计算负担的考虑,在常用的MOCO方法中通常采用一些近似值,这些近似值对于中等孔径长度的SAR系统有效。但是,更精确的SAR数据处理方法吸引了处理具有大孔径长度(例如P波段)的低频SAR系统的需求。本文提出了一种高精度,高效率的新型MOCO方法。经过处理和依赖于距离的MOCO,给出了部分聚焦SAR图像的二维光谱的解析表达式。之后,通过线性调频调制技术实现孔径减小。最终,以高精度和较少的计算成本,沿着新构建的短孔径(受残余运动误差影响)的反投影被用来产生聚焦良好的SAR图像。给出了模拟和实际P波段SAR数据的实验结果,以验证所提出方法的性能。

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