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Evaluation of terrain models for the geocoding and terrain correction, of synthetic aperture radar (SAR) images

机译:合成孔径雷达(SAR)图像的地理编码和地形校正的地形模型评估

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The variability of the resolutions and the presence of artifacts cause inaccurate correction of the terrain-induced geometric distortions in synthetic-aperture radar (SAR) images. To quantify the effects of these inaccuracies on SAR terrain correction, corrections of a Seasat SAR image were performed using a 1 degrees US Geological Survey (USGS) terrain model, a 7.5-min USGS terrain model, and a terrain model derived from stereoimagery acquired from SPOT. Geometric verifications of the corrected imagery showed that the resolution of the 1 degrees terrain model is not adequate to resolve many features in the Seasat image. Geometric verifications of images corrected with the two higher resolution terrain models showed localized errors as large as 52 m for mountain peaks. However, comparison of data corrected with those models shows that both produce results that differ by less than the resolution of either of them. Periodic artifacts observed in the terrain models translated to ground range differences of 18 m, which are well below the resolution of the SAR imagery.
机译:分辨率的可变性和伪影的存在导致合成孔径雷达(SAR)图像中地形引起的几何变形的不正确校正。为了量化这些误差对SAR地形校正的影响,使用1度美国地质调查局(USGS)地形模型,7.5分钟的USGS地形模型以及从点。对校正后的图像进行几何验证后,发现1度地形模型的分辨率不足以解决Seasat图像中的许多特征。用两个更高分辨率的地形模型校正的图像的几何验证显示,山峰的局部误差高达52 m。但是,用这些模型校正的数据的比较表明,两者所产生的结果相差都小于两者中任何一个的分辨率。在地形模型中观察到的周期性伪影转化为18 m的地面范围差异,该差异远低于SAR图像的分辨率。

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