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An Azimuth Frequency Non-Linear Chirp Scaling (FNCS) Algorithm for TOPS SAR Imaging With High Squint Angle

机译:高斜角TOPS SAR成像的方位角频率非线性线性调频缩放(FNCS)算法

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During the data acquisition of a squint terrain observation by progressive scan (TOPS) synthetic aperture radar (SAR), the steering of the antenna main beam increases the azimuth bandwidth and results in the azimuth signal aliasing in the Doppler domain. Besides, the range curvature and the Doppler frequency modulation (FM) rates after linear range walk correction are azimuth-variant for squint TOPS SAR. These problems may cause some difficulties for the SAR data processing. To deal with the problems, a new imaging algorithm for the squint TOPS SAR is introduced in this paper. After linear range walk correction, the azimuth preprocessing is implemented to achieve the two-dimensional frequency spectrum without aliasing. Then, utilizing a modified chirp scaling algorithm, we complete the range cell migration correction (RCMC) and range compression to the TOPS SAR data without subaperture. Finally, the frequency nonlinear chirp scaling (FNCS) is proposed to correct the variation of the FM rates and the azimuth signal is focused in the Doppler domain via the spectral analysis (SPECAN) method. Both simulation and real data results show the effectiveness of the proposed algorithm.
机译:在通过逐行扫描(TOPS)合成孔径雷达(SAR)进行斜视地形观察的数据采集过程中,天线主波束的转向会增加方位角带宽,并导致多普勒域中的方位角信号混叠。此外,对于斜视TOPS SAR,线性距离游动校正后的距离曲率和多普勒频率调制(FM)速率是方位角变量。这些问题可能会给SAR数据处理带来一些困难。针对这一问题,本文介绍了斜视TOPS SAR的一种新的成像算法。在线性范围游动校正之后,实施方位角预处理以实现二维频谱而不会出现混叠。然后,利用改进的线性调频缩放算法,我们完成了距离像元迁移校正(RCMC)和无子孔径的TOPS SAR数据的距离压缩。最后,提出了频率非线性线性调频标度(FNCS)以校正FM速率的变化,并通过频谱分析(SPECAN)方法将方位角信号聚焦在多普勒域中。仿真和实际数据结果均表明了该算法的有效性。

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