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INSAR phase offset estimation for DEM generation: Improvement of the performances of the STopBE and IPBE algorithms

机译:用于DEM生成的INSAR相移估计:STopBE和IPBE算法的性能改进

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摘要

In order to generate a Digital Elevation Model (DEM) by exploiting the Synthetic Aperture Radar (SAR) Interferometry (InSAR) technique, it is necessary to properly estimate an unknown phase offset present in the unwrapped interferogram. To this aim, two deterministic methods, which make use of an external low accuracy DEM, have been recently proposed. Both algorithms, which are named Slope Topography Based Estimate (STopBE) and Improved Phase Based Estimate (IPBE), are based on a Least Squares (LS) inversion exploiting a linear model of the observables. However, in both cases, the LS inversion leads to the design of a filter that, in practice cannot be implemented due to the inaccuracy of the used external DEM. Accordingly, both the STopBE and the IPBE have to necessarily exploit a noisy version of the corresponding theoretical LS filter. In this work we investigate the effects of this limitation and propose a procedure aimed at reducing them. The presented analysis is validated by means of experiments carried out on different topographic scenarios.
机译:为了通过利用合成孔径雷达(SAR)干涉测量(InSAR)技术生成数字高程模型(DEM),必须正确估计展开的干涉图中存在的未知相位偏移。为此,最近提出了两种使用外部低精度DEM的确定性方法。这两种算法分别称为“基于坡度地形的估算(STopBE)”和“基于改进相位的估算(IPBE)”,均基于最小二乘(LS)反演,并利用了可观测物的线性模型。但是,在这两种情况下,LS反转都会导致滤波器的设计,由于所使用的外部DEM的不准确性,实际上无法实现该滤波器。因此,STopBE和IPBE都必须利用相应理论LS滤波器的噪声版本。在这项工作中,我们调查了这种限制的影响,并提出了旨在减少这种限制的程序。通过在不同地形情况下进行的实验验证了所提出的分析。

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