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An Imaging Compensation Algorithm for Correcting the Impact of Tropospheric Delay on Spaceborne High-Resolution SAR

机译:校正对流层延迟对星载高分辨率SAR影响的成像补偿算法

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Atmospheric refraction in the troposphere causes the propagation speed of electromagnetic signals to be less than the light speed. This creates a difference between the actual propagation path delay and the distance of the geometrical straight-line path, i.e., a quantity known as the tropospheric delay. As classical imaging algorithms for spaceborne synthetic aperture radar (SAR) do not take the tropospheric delay into account, imaging filters are designed based on the assumption of rectilinear propagation with the light speed. Therefore, a residual phase exists in imaging results, which affects focusing quality under the condition of high resolution. In order to compensate for the impact of tropospheric delay on focusing performance, this paper modifies the spaceborne SAR echo model and then proposes an imaging compensation algorithm. The key to this algorithm is to fit a range delay coefficient based on the European Geostationary Navigation Overlay Service model of zenith delay and Niell mapping function, which projects the zenith delay onto the looking direction. After range compensation, classical imaging, and azimuth compensation, which compose the proposed algorithm, the processed results are well focused.
机译:对流层的大气折射使电磁信号的传播速度小于光速。这在实际传播路径延迟和几何直线路径的距离之间产生了差,即被称为对流层延迟的量。由于用于星载合成孔径雷达(SAR)的经典成像算法未考虑对流层延迟,因此基于光速直线传播的假设来设计成像滤波器。因此,在成像结果中存在残留相位,这会影响高分辨率条件下的聚焦质量。为了补偿对流层延迟对聚焦性能的影响,本文对星载SAR回波模型进行了修正,提出了一种成像补偿算法。该算法的关键是基于天顶延迟和Niell映射函数的欧洲对地静止导航叠加服务模型拟合距离延迟系数,该模型将天顶延迟投影到观察方向上。经过范围补偿,经典成像和方位角补偿,构成了所提出的算法,处理结果得到了很好的关注。

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