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Terrain elevation measurement by interferometric synthetic aperture radar (ifsar)

机译:干涉合成孔径雷达(ifsar)进行地形高程测量

摘要

An interferometric synthetic aperture radar (IFSAR) elevation measurement processor computes an elevation array by processing a first image array to generate an elevation corrected first image array, processing a second image array to generate an elevation corrected second image array, generating a phase interferogram from the elevation corrected first and second image arrays, and processing the phase interferogram to generate the computed elevation array. The layover correction is based on either (1) a predetermined elevation array, (2) an elevation array computed by radargrammetry, (3) an initial computed elevation array developed in an initial iteration by initial interferometry of uncorrected images followed by the layover correction in a subsequent iteration based on the initial computed elevation array, or (4) a combination of the above. The layover correction process removes range and Doppler distortion inherent in pixel data due to elevations variations in the imaged terrain.
机译:干涉式合成孔径雷达(IFSAR)高程测量处理器通过处理第一图像阵列以生成高程校正后的第一图像阵列,处理第二图像阵列以生成高程校正后的第二图像阵列,并从中获取相位干涉图来计算高程阵列。高程校正的第一和第二图像阵列,并处理相位干涉图以生成计算出的高程阵列。叠加校正基于以下两种情况之一:(1)预定的高程阵列;(2)通过雷达测量法计算的高程阵列;(3)通过未校正图像的初始干涉测量在初始迭代中开发的初始计算出的高程阵列,然后进行叠加校正。基于初始计算的高程数组的后续迭代,或(4)上面的组合。叠加校正过程可消除由于成像地形中的高程变化而导致的像素数据固有的范围和多普勒失真。

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