会议论文详细信息
35th International Symposium on Remote Sensing of Environment
Calibration and Validation of Airborne InSAR Geometric Model
地球科学;生态环境科学
Chunming, Han^1 ; Huadong, Guo^1 ; Xijuan, Yue^1 ; Changyong, Dou^1 ; Mingming, Song^1 ; Yanbing, Zhang^1
Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, No. 9 Dengzhuang South Road, Haidian, Beijing 100094, China^1
关键词: Airborne interferometric synthetic aperture radars;    Calibration and validations;    Chinese Academy of Sciences;    Digital surface model (DSM);    Geometric modeling;    Geometric relationships;    Geometrical modeling;    Threedimensional (3-d);   
Others  :  https://iopscience.iop.org/article/10.1088/1755-1315/17/1/012188/pdf
DOI  :  10.1088/1755-1315/17/1/012188
学科分类:环境科学(综合)
来源: IOP
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【 摘 要 】

The image registration or geo-coding is a very important step for many applications of airborne interferometric Synthetic Aperture Radar (InSAR), especially for those involving Digital Surface Model (DSM) generation, which requires an accurate knowledge of the geometry of the InSAR system. While the trajectory and attitude instabilities of the aircraft introduce severe distortions in three dimensional (3-D) geometric model. The 3-D geometrical model of an airborne SAR image depends on the SAR processor itself. Working at squinted model, i.e., with an offset angle (squint angle) of the radar beam from broadside direction, the aircraft motion instabilities may produce distortions in airborne InSAR geometric relationship, which, if not properly being compensated for during SAR imaging, may damage the image registration. The determination of locations of the SAR image depends on the irradiated topography and the exact knowledge of all signal delays: range delay and chirp delay (being adjusted by the radar operator) and internal delays which are unknown a priori. Hence, in order to obtain reliable results, these parameters must be properly calibrated. An Airborne InSAR mapping system has been developed by the Institute of Remote Sensing and Digital Earth (RADI), Chinese Academy of Sciences (CAS) to acquire three-dimensional geo-spatial data with high resolution and accuracy. To test the performance of the InSAR system, the Validation/Calibration (Val/Cal) campaign has carried out in Sichun province, south-west China, whose results will be reported in this paper.

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