Estimating three-dimensional displacements with InSAR: the strapdown approach

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Wietske S. Brouwer, Ramon F Hanssen
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引用次数: 0

Abstract

Deformation phenomena on Earth are inherently three dimensional. With SAR interferometry (InSAR), in many practical situations the maximum number of observations is two (ascending and descending), resulting in an infinite number of possible displacement estimates. Here we propose a practical solution to this underdeterminancy problem in the form of the strapdown approach. With the strapdown approach, it is possible to obtain “3D-global/2D-local” solutions, by using minimal and largely undisputed contextual information, on the expected driving mechanisms and/or spatial geometry. It is a generic method that defines a local reference system with transversal, longitudinal, and normal (TLN) axes, with displacement occurring in the transversal-normal plane only. Since the orientation of the local frame is based on the physics of the problem at hand, the strapdown approach gives physically more relevant estimates compared to conventional approaches. Moreover, using an a-priori uncertainty approximation on the orientation of the local frame it is possible to assess the precision of the final estimates. As a result, appropriate cartographic visualization using a vector map with confidence ellipses enables an improved interpretation of the results.

用InSAR估计三维位移:捷联方法
地球上的变形现象本身就是三维的。使用SAR干涉测量(InSAR),在许多实际情况下,观测的最大数量是两个(上升和下降),从而产生无限数量的可能位移估计。在这里,我们以捷联方法的形式提出一种实际的解决方案来解决这种不确定性问题。使用捷联方法,可以通过使用关于预期驱动机制和/或空间几何的最小且大部分无可争议的上下文信息,获得“3d -全局/ 2d -局部”解决方案。这是一种通用的方法,它定义了一个具有横向、纵向和法线(TLN)轴的局部参考系,位移只发生在横向法线平面上。由于局部框架的方向是基于手头问题的物理性质,因此与传统方法相比,捷联方法给出了物理上更相关的估计。此外,利用对局部框架方向的先验不确定性近似,可以评估最终估计的精度。因此,使用带有置信度椭圆的矢量地图进行适当的地图可视化,可以改进对结果的解释。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Geodesy
Journal of Geodesy 地学-地球化学与地球物理
CiteScore
8.60
自引率
9.10%
发文量
85
审稿时长
9 months
期刊介绍: The Journal of Geodesy is an international journal concerned with the study of scientific problems of geodesy and related interdisciplinary sciences. Peer-reviewed papers are published on theoretical or modeling studies, and on results of experiments and interpretations. Besides original research papers, the journal includes commissioned review papers on topical subjects and special issues arising from chosen scientific symposia or workshops. The journal covers the whole range of geodetic science and reports on theoretical and applied studies in research areas such as: -Positioning -Reference frame -Geodetic networks -Modeling and quality control -Space geodesy -Remote sensing -Gravity fields -Geodynamics
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