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Validation of DEMs for Two-pass SAR Differential Interferometry - A case study in Wangfeng coal mine, Jiaozuo city

机译:双通SAR差动干涉学验证DEM - 以胶井市王凤煤矿为例

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The two-pass method is widely used in the SAR differential interferometry (D-InSAR). It requires the external digital elevation model (DEM) as topographic phase signature to be removed from the interferogram. In the past decades, significant advance in global elevation modeling have been made with the release of the SRTM DEM and ASTER GDEM at no cost. These DEMs are often used for two-pass method, but their influence on the quality of the interferometry remains poorly understood. Taking the Wangfeng coal mine in Jiaozuo city as test site, this paper evaluate the validation of the latest release of SRTM DEM (v4.1), ASTER GDEM and 1:50000 topographic map-derived DEM for two-pass D-InSAR measurement. The height accuracy, the precision of co-registration and the precision of D-InSAR measurement are qualified using ERS SAR images and leveling data from 2002 to 2005. The results demonstrated that the ASTER GDEM has lower height accuracy and lower precision of co-registration with SAR images, causing higher error in two-pass D-InSAR measurement. While the ASTER GDEM has an unprecedented horizontal resolution of ~30 m, systematic errors present in this research-grade version of the ASTER GDEM will impede its use for two-pass D-InSAR.
机译:两个通方法广泛用于在SAR差分干涉测量(d-干涉SAR)。它需要从干涉去除的外部数字高程模型(DEM)作为地形相签名。在过去的几十年中,全球高程模型显著事先已与该SRTM DEM和ASTER GDEM不花钱的释放。这些数字高程模型通常用于两步法,但他们对干涉遗体的质量的影响知之甚少。以焦作市万丰煤矿作为试验场地,本文探讨SRTM DEM(V4.1),ASTER GDEM和1最新发布的验证:50000地形图,数字高程模型得出两个通d-InSAR的测量。高度准确性,共配准的精度和d-InSAR的测量的精确度是合格的使用ERS SAR图像和流平从2002年至2005年证明了ASTER GDEM具有较低高度的准确性和配准精度降低的结果数据与SAR图像,在两遍d-干涉SAR测量导致更高的错误。虽然ASTER GDEM具有约30米的前所未有的水平分辨率,系统误差出现在这项研究级版本的ASTER GDEM将妨碍其两通d-InSAR技术的使用。

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