通过先进的共配准和相位校正技术改进干涉合成孔径雷达处理

M. Shahbazi, M. Motagh
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引用次数: 2

摘要

干涉合成孔径雷达(InSAR)是一种利用两幅或多幅SAR图像的干涉图生成地表变形图或数字高程模型的雷达。InSAR位移图生成的操作处理链包括5个主要阶段:共配准和重采样、干涉图生成、平地校正、地形校正和相位展开。本文讨论并评估了作者提出的SAR图像匹配、地形和参考相位校正算法,这些算法在提高效率、减少时间和计算量方面改进了传统的InSAR处理技术。我们提出的算法在MATLAB中实现,并与DORIS软件对2003年BAM地震相关的一对Envisat ASAR数据进行的传统InSAR处理进行了评估。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Improved Interferometric Synthetic Aperture Radar processing via advanced co-registration and phase correction techniques
Interferometric Synthetic Aperture Radar (InSAR) applies the interferograms of two or more SAR images to generate maps of surface deformation or digital elevation models. InSAR operational processing chain for displacement map generation comprises of five major stages: co-registration and re-sampling, interferogram generation, flat-earth correction, topography correction and phase unwrapping. This paper discusses and evaluates the authors' proposed algorithms for SAR image matching and for topographic and reference-phase corrections, which improve conventional InSAR processing techniques in terms of increasing efficiency and reducing the time and computational effort. Our proposed algorithms are implemented in MATLAB and evaluated with respect to the conventional InSAR processing performed by DORIS software for a pair of Envisat ASAR data associated with the 2003 BAM earthquake.
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