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首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >SAR Tomography at the Limit: Building Height Reconstruction Using Only 3–5 TanDEM-X Bistatic Interferograms
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SAR Tomography at the Limit: Building Height Reconstruction Using Only 3–5 TanDEM-X Bistatic Interferograms

机译:SAR断层扫描限制:仅使用3-5串联x双弦干扰图构建高度重建

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摘要

Multibaseline interferometric synthetic aperture radar (InSAR) techniques are effective approaches for retrieving the 3-D information of urban areas. In order to obtain a plausible reconstruction, it is necessary to use more than 20 interferograms. Hence, these methods are commonly not appropriate for large-scale 3-D urban mapping using TanDEM-X data, where only a few acquisitions are available in average for each city. This article proposes a new SAR tomographic processing framework to work with those extremely small stacks, which integrates the nonlocal filtering into SAR tomography inversion. The applicability of the algorithm is demonstrated using a TanDEM-X multibaseline stack with five bistatic interferograms over the whole city of Munich, Germany. A systematic comparison of our result with TanDEM-X raw digital elevation models (DEMs) and airborne LiDAR data shows that the relative height accuracy of two-third buildings is within 2 m, which outperforms the TanDEM-X raw DEM. The promising performance of the proposed algorithm paved the first step toward high-quality large-scale 3-D urban mapping.
机译:多算线干涉合成孔径雷达(Insar)技术是检索城市地区三维信息的有效方法。为了获得合理的重建,有必要使用超过20个干扰图。因此,这些方法通常不适合使用TandeM-X数据的大规模3-D城市映射,其中每个城市平均仅提供几个收购。本文提出了一种新的SAR断层扫描处理框架来与那些非常小的堆栈一起使用,这将非识别滤波集成到SAR断层扫描反转中。算法的适用性是使用德国全市慕尼黑市的五个双击型干涉图的串联X多元化堆栈。我们使用Tandem-X原始数字高度模型(DEM)和空中LIDAR数据的系统进行了系统的比较,表明,双第三建筑物的相对高度精度在2米范围内,这优于Tandem-X原始DEM。所提出的算法的有希望的性能铺设了高质量大型3-D城市映射的第一步。

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