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Calibration and validation of SAR interferometry for DEM generation

机译:用于生成DEM的SAR干涉仪的校准和验证

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摘要

A complete interferometric SAR (InSAR) procedure for the generation of digital elevation models (DEMs) is described, stressing the InSAR geometric aspects. A new approach to transform the interferometric phases to terrain heights is presented, which aims at achieving an accurate geocoding of the InSAR-generated DEMs. It is based on a rigorous model that connects image space to object space and on a least squares (LS) calibration of the InSAR geometry with ground control points (GCPs). The procedure may include the fusion of data coming from ascending and descending pairs of SAR images. For this purpose, a simultaneous calibration of the geometry of different InSAR pairs is proposed. It allows reducing the number of required GCPs using tie points, in analogy with the photogrammetric procedures. The validation of two DEMs, one coming from an ascending ERS-1 SAR pair and the other one derived by fusion of ascending and descending ERS-1 data, is described paying attention to the atmospheric effects on the generated DEMs.
机译:描述了用于生成数字高程模型(DEM)的完整干涉式SAR(InSAR)程序,强调了InSAR几何方面。提出了一种将干涉相转换为地形高度的新方法,旨在实现InSAR生成的DEM的精确地理编码。它基于将图像空间连接到对象空间的严格模型,并且基于地面控制点(GCP)对InSAR几何形状的最小二乘(LS)校准。该过程可以包括融合来自SAR图像的上升和下降对的数据。为此,建议同时校准不同InSAR对的几何形状。与摄影测量程序类似,它允许使用连接点减少所需GCP的数量。描述了两个DEM的验证,其中一个来自上升的ERS-1 SAR对,另一个是通过融合上升和下降的ERS-1数据得出的,同时要注意大气对生成的DEM的影响。

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