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A Novel Azimuth Super-Resolution Method by Synthesizing Azimuth Bandwidth of Multiple Tracks of Airborne Stripmap SAR Data

机译:机载带状图SAR数据多迹线方位角带宽合成的方位角超高分辨率新方法

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摘要

Azimuth resolution of airborne stripmap synthetic aperture radar (SAR) is restricted by the azimuth antenna size. Conventionally, a higher azimuth resolution should be achieved by employing alternate modes that steer the beam in azimuth to enlarge the synthetic antenna aperture. However, if a data set of a certain region, consisting of multiple tracks of airborne stripmap SAR data, is available, the azimuth resolution of specific small region of interest (ROI) can be conveniently improved by a novel azimuth super-resolution method as introduced by this paper. The proposed azimuth super-resolution method synthesize the azimuth bandwidth of the data selected from multiple discontinuous tracks and contributes to a magnifier-like function with which the ROI can be further zoomed in with a higher azimuth resolution than that of the original stripmap images. Detailed derivation of the azimuth super-resolution method, including the steps of two-dimensional dechirping, residual video phase (RVP) removal, data stitching and data correction, is provided. The restrictions of the proposed method are also discussed. Lastly, the presented approach is evaluated via both the single- and multi-target computer simulations.
机译:机载带状图合成孔径雷达(SAR)的方位角分辨率受方位角天线尺寸的限制。传统上,应该通过采用交替的模式来实现更高的方位角分辨率,这些模式将波束转向方位角以扩大合成天线的孔径。但是,如果某个区域的数据集由机载带状图SAR数据的多条轨道组成,则可以通过引入一种新颖的方位角超分辨率方法方便地提高特定小目标区域(ROI)的方位角分辨率。通过本文。拟议的方位角超分辨率方法综合了从多个不连续磁道中选择的数据的方位角带宽,并有助于实现类似放大镜的功能,利用该功能可以以比原始带状图图像更高的方位角分辨率进一步放大ROI。提供了方位超分辨率方法的详细推导,包括二维去毛刺,残余视频相位(RVP)去除,数据拼接和数据校正的步骤。还讨论了所提出方法的局限性。最后,通过单目标和多目标计算机仿真对所提出的方法进行了评估。

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