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An algorithm for Phase-Offset evaluation in InSAR DEM Generation

机译:insar dem生成中相偏移评估的算法

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Synthetic Aperture Radar Interferometry (InSAR) is a technique for the generation of Digital Elevation Models (DEMs) of an observed scene. It exploits the phase difference (interferogram) of two SAR images relevant to the same area and acquired by two different look angles. To recover the topographic information from an InSAR data pair, it is necessary to evaluate a proper phase offset value to add to the unwrapped SAR interferogram. Generally, such a phase offset is accurately estimated by using Corner Reflectors (CRs) properly deployed over the illuminated area. Nevertheless, in some cases of practical interest, CRs cannot be used: in order to overcome this limit, different algorithms have been proposed in literature. In this paper, we present an algorithm aimed at estimating the InSAR phase-offset without using CRs. To this aim, we first present a theoretical analysis, validated by experiments carried out on simulated data, for the evaluation of the phase offset and, thereafter, we apply the proposed method on real data acquired by the X-band airborne OrbiSAR system. Comparisons with results achieved by using CRs properly deployed over the test site are also included.
机译:合成孔径雷达干涉测量法(INSAR)是一种用于产生观察到的场景的数字高度模型(DEMS)的技术。它利用与相同区域相关的两个SAR图像的相位差(干扰图),并通过两个不同的外观角度获取。要从Insar数据对中恢复地形信息,有必要评估适当的相位偏移值以添加到未包装的SAR干扰图。通常,通过使用正确展开在照明区域上的角反射器(CRS)来精确地估计这种相位偏移。然而,在一些实际兴趣的情况下,不能使用CRS:为了克服这个限制,在文献中提出了不同的算法。在本文中,我们介绍了一种旨在估计Insar阶段偏移的算法而不使用CRS。为此,我们首先介绍一个理论分析,通过对模拟数据进行的实验进行验证,用于评估相位偏移,然后,我们将该方法应用于由X波段机载orbisar系统获取的实际数据上的方法。还包括通过使用在测试站点上正确部署的CRS实现的结果进行比较。

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