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Rigorous radiometric calibration of airborne AeS-1 InSAR data

机译:机载AeS-1 InSAR数据的严格辐射定标

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摘要

The processing of synthetic aperture radar images usually does not include topographic information, and therefore significant radiometric uncertainties remain, making the processed data not directly suitable for signature analysis, for classification purposes or to relate SAR data to geophysical parameters. An accurate SAR data calibration in areas with terrain variations can only be accomplished considering high resolution elevation data, precise position and attitude data of the antenna, and the appropriate SAR geometry. Using these information one is able to correct each pixel in terms of radiometry. The AeS-1 interferometric SAR system allows the generation of high resolution surface height information at X-band. A rigorous approach to radiometrically calibrate the amplitude data is presented in this paper. Surface heights and slope variations derived from the interferometric phase are exploited for this purpose, considering also precise antenna pointing variations and topography for the antenna gain correction. The presented method is demonstrated for a test site having different terrain morphologies.
机译:合成孔径雷达图像的处理通常不包括地形信息,因此仍然存在大量辐射不确定性,从而使处理后的数据不直接适用于签名分析,分类目的或将SAR数据与地球物理参数相关联。仅在考虑高分辨率仰角数据,天线的精确位置和姿态数据以及适当的SAR几何形状的情况下,才能在具有地形变化的区域中进行准确的SAR数据校准。使用这些信息,就能够根据辐射度校正每个像素。 AeS-1干涉SAR系统允许在X波段生成高分辨率表面高度信息。本文提出了一种严格的方法,以辐射方式校准振幅数据。为此,利用了从干涉测量相位得出的表面高度和斜率变化,同时还考虑了精确的天线指向变化和用于天线增益校正的形貌。针对具有不同地形形态的测试站点演示了所提出的方法。

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