首页> 外文期刊>Journal of Geodesy >Differential geodetic stereo SAR with TerraSAR-X by exploiting small multi-directional radar reflectors
【24h】

Differential geodetic stereo SAR with TerraSAR-X by exploiting small multi-directional radar reflectors

机译:通过利用小型多向雷达反射器与TerraSAR-X进行差分大地测量立体SAR

获取原文
获取原文并翻译 | 示例
           

摘要

In this paper, we report on the direct positioning of small multi-directional radar reflectors, so-called octahedrons, with the synthetic aperture radar (SAR) satellite TerraSAR-X. Its highest resolution imaging mode termed staring spotlight enables the use of such octahedron reflectors with a dimension of only half a meter, but still providing backscatter equivalent to 1-2 cm observation error. Four octahedrons were deployed at Wettzell geodetic observatory, and observed by TerraSAR-X with 12 acquisitions in three different geometries. By applying our least squares stereo SAR algorithm already tested with common trihedral corner reflectors (CRs), and introducing a novel differential extension using one octahedron as reference point, the coordinates of the remaining octahedrons were directly retrieved in the International Terrestrial Reference Frame (ITRF). Contrary to our standard processing, the differential approach does not require external corrections for the atmospheric path delays and the geodynamic displacements, rendering it particularly useful for joint geodetic networks employing SAR and GNSS. In this paper, we present and discuss both methods based on results when applying them to the aforementioned Wettzell data set of the octahedrons. The comparison with the independently determined reference coordinates confirms the positioning accuracy with 2-5 cm for the standard approach, and 2-3 cm for the differential processing. Moreover, we present statistical uncertainty estimates of the observations and the positioning solutions, which are additionally provided by our parameter estimation algorithms. The results also include our 1.5 m CR available at Wettzell, and the outcomes clearly demonstrate the advantage of the multi-directional octahedrons over conventional CRs for global positioning applications with SAR.
机译:在本文中,我们报告了使用合成孔径雷达(SAR)卫星TerraSAR-X对小型多向雷达反射器(即八面体)的直接定位。其最高分辨率的成像模式称为凝视聚光灯,可以使用尺寸仅为半米的八面体反射镜,但仍提供相当于1-2 cm观察误差的反向散射。在Wettzell大地观测台部署了四个八面体,并通过TerraSAR-X在三个不同的几何体中进行了12次采集,进行了观测。通过应用已经在普通三面角反射器(CR)上测试过的最小二乘立体SAR算法,并引入一个以八面体为参考点的新颖差分扩展,可以直接在国际地面参考框架(ITRF)中检索其余八面体的坐标。与我们的标准处理方法相反,差分方法不需要对大气路径延迟和地球动力学位移进行外部校正,这使其特别适用于采用SAR和GNSS的联合大地测量网络。在本文中,我们基于结果将这两种方法应用于上述八面体的Wettzell数据集,并进行讨论。与独立确定的参考坐标进行比较,可以确定标准方法的定位精度为2-5厘米,差分处理为2-3厘米。此外,我们提出了观测值和定位解决方案的统计不确定性估计,这些额外不确定性由我们的参数估计算法提供。结果还包括Wettzell提供的1.5 m CR,结果清楚地证明了多方向八面体相对于常规CR具有SAR的全球定位应用的优势。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号