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On the value of corner reflectors and surface models in InSAR precise point positioning

机译:InSAR精确点定位中角反射器和曲面模型的价值

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摘要

To correctly interpret the estimated displacements in InSAR point clouds, especially in the built environment, these need to be linked to real-world structures. This requires the accurate and precise 3D positioning of each point. Artificial ground control points (GCPs), such as corner reflectors, serve this purpose, but since they require efforts and resources, there is a need for criteria to assess their usefulness. Here we evaluate the value and necessity of using GCPs for different scenarios, concerning the required efforts, and compare this to alternatives such as digital surface models (DSM) and advanced (geo) physical corrections. We consider single-epoch as well as multi-epoch GCP deployment, reflect on the number of GCPs required in relation to the number of SAR data acquisitions, and compare this with digital surface models of different quality levels. Analyzing the geolocation performance using TerraSAR-X and Sentinel-1 data, we evaluate the pros and cons of various deployment options and show that the multi-epoch deployment of a GCP yields optimal geolocalization results in terms of precision, accuracy, and reliability.
机译:为了正确解释InSAR点云中的估计位移,尤其是在建筑环境中,需要将这些位移与实际结构关联起来。这需要每个点的准确和精确的3D定位。人工地面控制点(GCP),例如转角反射器,可达到此目的,但由于它们需要付出努力和资源,因此需要评估其有用性的标准。在这里,我们评估了在不同情况下使用GCP的价值和必要性,并涉及了所需的工作,并将其与诸如数字表面模型(DSM)和高级(geo)物理校正之类的替代方法进行了比较。我们考虑单时期和多时期GCP部署,考虑所需的GCP数量与SAR数据采集的数量有关,并将其与不同质量级别的数字地面模型进行比较。使用TerraSAR-X和Sentinel-1数据分析地理位置性能,我们评估了各种部署选项的优缺点,并显示了GCP的多时期部署在精度,准确性和可靠性方面产生了最佳的地理定位结果。

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