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Azimuth dependence of quadratic range cell migration correction for the high squint synthetic aperture radar

机译:高斜视合成孔径雷达二次距离像元偏移校正的方位角依赖性

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For the high squint strip-map mode synthetic aperture radar (SAR), the range cell walk correction (RCWC) in azimuth time domain will bring space-variant along azimuth of quadratic range cell migration. To get the full resolution and quality of the image, the space-variant for the quadratic phase and the quadratic range cell migration in the azimuth must be taken account. In this paper, a novel processing algorithm for the space-variant of quadratic range cell migration is proposed. In the algorithm, the azimuth dependence component of quadratic range cell migration is implemented by the azimuth space-variant filtering in the range frequency domain. After that, the unified quadratic range cell migration can be corrected in the 2-D frequency domain. Simulation and airborne strip-map real data show the accurate and efficient of the proposed algorithm.
机译:对于高斜视带状图模式合成孔径雷达(SAR),方位角时域中的距离像元走动校正(RCWC)将使空间变量沿二次距离像元迁移的方位角变化。为了获得完整的图像分辨率和图像质量,必须考虑二次相位的空间变量和方位角中二次距离单元的迁移。本文提出了一种新的二次距离细胞迁移空间变异处理算法。在该算法中,二次距离单元迁移的方位角相关分量是通过在距离频域中进行方位角空间变量滤波来实现的。之后,可以在二维频域中校正统一的二次距离单元迁移。仿真和机载带状图真实数据表明了该算法的准确性和有效性。

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