Ground-level digital terrain model (DTM) construction from TanDEM-X InSAR data and WorldView stereo-photogrammetric images

Seung-Kuk Lee, T. Fatoyinbo, D. Lagomasino, B. Osmanoglu, E. Feliciano
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引用次数: 1

Abstract

The ground-level digital elevation model (DEM) or digital terrain model (DTM) information are invaluable for environmental modeling, such as water dynamics in forests, canopy height, forest biomass, carbon estimation, etc. We propose to extract the DTM over forested areas from the combination of interferometric complex coherence from single-pass TanDEM-X (TDX) data at HH polarization and Digital Surface Model (DSM) derived from high-resolution WorldView (WV) image pair by means of random volume over ground (RVoG) model. The RVoG model is a widely and successfully used model for polarimetric SAR interferometry (Pol-InSAR) technique for vertical forest structure parameter retrieval [1][2][3][4]. The ground-level DEM have been obtained by complex volume decorrelation in the RVoG model with the DSM using stere-ophotogrammetric technique. Finally, the airborne lidar data were used to validate the ground-level DEM and forest canopy height results.
利用TanDEM-X InSAR数据和WorldView立体摄影测量图像构建地面数字地形模型(DTM)
地面数字高程模型(DEM)或数字地形模型(DTM)信息对于森林水动力学、冠层高度、森林生物量、碳估算等环境建模具有不可估量的价值。本文提出利用HH偏振下单通TanDEM-X (TDX)数据的干涉复相干性和基于高分辨率WorldView (WV)图像对的数字地表模型(DSM)结合,利用RVoG模型提取森林地区的DTM。RVoG模型是偏振SAR干涉测量(Pol-InSAR)技术用于垂直森林结构参数检索的一个广泛而成功的模型。利用立体摄影测量技术,对RVoG模型与DSM进行复体解相关,得到了地面DEM。最后,利用机载激光雷达数据对地面DEM和森林冠层高度结果进行验证。
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