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High Quality Large-Scale 3-D Urban Mapping with Multi-Master TomoSAR

机译:高品质大型3-D城市映射与多主机划线

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Multi-baseline 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 large-stack 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 work proposes a new SAR tomographic processing framework to work with those extremely small stacks, which integrates the non-local filtering into SAR tomography inversion. The applicability of the algorithm is demonstrated using a TanDEM-X multi-baseline stack with 5 bistatic interferograms over the whole city of Munich, Germany. Systematic comparison of our result with airborne LiDAR data shows that the relative height accuracy of two third buildings is within two meters, which outperforms the TanDEM-X raw DEM. The promising performance of the proposed algorithm paved the first step towards high quality large-scale 3-D urban mapping.
机译:多基线干涉性合成孔径雷达(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,有必要使用大堆干涉图。因此,这些方法通常不适合使用串联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。这项工作提出了一种新的SAR断层扫描处理框架来与那些非常小的堆栈一起使用,它将非本地过滤集成到SAR断层扫描反转中。使用Tandem-x多基线堆栈对德国全市慕尼黑的5个双基线堆栈进行了说明了该算法的适用性。通过空气传播的LIDAR数据系统的系统比较显示,两个第三座建筑物的相对高度精度在两米范围内,这胜过串联X原料DEM。所提出的算法的有希望的性能铺平了迈向高质量大型3-D城市映射的第一步。

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