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A Phase-Offset Estimation Method for InSAR DEM Generation Based on Phase-Offset Functions

机译:基于相位偏移函数的InSAR DEM生成的相位偏移估计方法

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摘要

This paper presents a novel method for estimating the absolute phase offset in interferometric synthetic aperture radar (SAR) measurements for digital elevation model (DEM) generation. The method is based on “phase-offset functions (POF),” relating phase offset to topographic height, and are computed for two different overlapping interferometric data acquisitions performed with considerably different incidence angles over the same area of interest. For the purpose of extended mapping, opposite viewing directions are preferred. The two “phase-offset functions” are then linearly combined, yielding a “combined phase-offset function (CPOF)”. The intersection point of several straight lines (CPOFs), corresponding to different points in the overlap area allows for solving the phase offset for both acquisitions. Aiming at increasing performance and stability, this intersection point is found by means of averaging many points and applying principal component analysis. The method is validated against traditional phase offset estimation with corner reflectors (CR) using real OrbiSAR-1 data in X- and P-band.
机译:本文提出了一种用于估算数字高程模型(DEM)生成的干涉式合成孔径雷达(SAR)测量中绝对相位偏移的新颖方法。该方法基于将相位偏移与地形高度相关的“相位偏移函数(POF)”,并针对在相同的感兴趣区域上以明显不同的入射角执行的两个不同的重叠干涉数据采集进行计算。为了扩展映射的目的,相反的观看方向是优选的。然后将两个“相位偏移函数”线性组合,产生一个“组合的相位偏移函数(CPOF)”。与重叠区域中不同点相对应的几条直线(CPOF)的交点可以解决两个采集的相位偏移。为了提高性能和稳定性,可以通过平均许多点并应用主成分分析来找到该交点。使用X和P波段的真实OrbiSAR-1数据,针对传统的带有角反射器(CR)的相位偏移估计对方法进行了验证。

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