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ENVISAT/ASAR多角度干涉雷达数据山区DEM生成及精度分析
引用本文:李新武,郭华东,李震.ENVISAT/ASAR多角度干涉雷达数据山区DEM生成及精度分析[J].遥感学报,2009,13(2):276-281.
作者姓名:李新武  郭华东  李震
作者单位:中国科学院对地观测与数字地球科学中心,数字地球科学重点实验室,北京,100190
基金项目:National Natural Science Foundation Committee,国家重点基础研究发展规划(973计划) 
摘    要:在地形起伏较大的山区用干涉SAR生成DEM时,合适的入射角是获取高精度DEM的重要参数之一.本文基于ENVISAT/ASAR多角度干涉雷达数据,SRTM 90米分辨率的DEM以及1:5万的数字化DEM数据,从定性和定量的角度比较和分析了干涉SAR在获取山区DEM时,入射角对DEM精度的具体影响.结果表明:对于ASAR的多入射角干涉雷达数据,在不同入射角条件下由于雷达叠掩和透视收缩的影响,获取的DEM精度差别很大,入射角带来的影响相当显著,比如IS2和IS4角度得到的DEM的精度差超过了6米.因此,在山区干涉SAR地形成图时,必须对入射角的大小进行严格的选择.

关 键 词:干涉雷达  多角度  叠掩  透视收缩

DEM generation and accuracy analysis on rugged terrain using ENVISAT/ASAR multi-angle InSAR data
LI Xin-wu,GUO Hua-dong and LI Zhen.DEM generation and accuracy analysis on rugged terrain using ENVISAT/ASAR multi-angle InSAR data[J].Journal of Remote Sensing,2009,13(2):276-281.
Authors:LI Xin-wu  GUO Hua-dong and LI Zhen
Abstract:With the successful implementation of ERS-1/2 tandem and SRTM project, InSAR has been wildly used for topographic mapping; in addition, the new global topographic mission such as TanDEM-X project is ongoing. In this paper, firstly, the impact of incidence angle on interferometric SAR DEM generation is detailed investigated from theoretical viewpoint; then, from the ENVISAT/ASAR multi-angle interferometric SAR data, the three DEMs of IS2, IS3 and IS4 swath images are generated using EvlnSAR software of EarthView; finally, the impact of layover and foreshortening on DEM accuracy at different incidence angle are compared and analyzed from quantitative and qualitative viewpoints using SRTM DEM with 90m horizontal resolution and digital topographic DEM with 1 : 50000 scale. The results indicate that : (1) the impact of incidence angle on DEM generation is significant and large differences exist in the result DEMs due to radar layover and foreshortening at different incidence angle. For example, the difference is over 6m between the DEMs extracted from IS2 and IS4 swath images. So, the incidence angle must be strictly selected when using InSAR for DEM generation in the mountain area. (2) The decorrelation is significant with the 35-day temporal, which is in prejudice of the overall DEM accuracy evaluation. If the data with large incidence angle and no temporal decorrelation is obtained, the further study and analysis will be implemented from more general quantitative and qualitative viewpoints.
Keywords:DEM  InSAR  multi-angle  DEM  layover  foreshortening
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