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Direct georeferencing of oblique and vertical imagery in different coordinate systems

机译:在不同坐标系中对倾斜和垂直图像进行直接地理配准

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摘要

Reconstruction of 3D models through integrating vertical and oblique imagery has been studied extensively. For a 3D reconstruction, object point cloud coordinates could be calculated using direct georeferencing (DG) obtained from the direct orientation data of a GPS/INS system. This paper implemented DG approaches for vertical and oblique imagery in the earth centered earth fixed frame (e-frame), local tangent frame (1-frame), and map projection frame (p-frame), respectively. In the p-frame, the earth curvature correction formulas were derived through naturalizing oblique imagery to vertical imagery to achieve a high positioning precision. Five basic stereo-pair models for vertical and oblique imagery were simulated to verify the positioning accuracy of different frames. Simulation experiments showed that DG in the e-frame and 1-frame of these five scenarios were rigorous, and no systematic errors were imported by the DG model as these frames are Cartesian. DG in the p-frame has obvious systematic errors which are aroused by the earth curvature and projection deformation unconformity in the vertical and horizontal directions. These errors, however, can be compensated effectively through correcting image coordinates of the oblique imagery by extending the standard image coordinate correction approach and the exterior orientation (EO) height term. After the correction, the absolute positioning error is lower than 1/20 GSD for simulation test-1. In the p-frame, the process is straightforward, and it is convenient for producing maps. For high accuracy DG, though, it is recommended to adopt e-frame or 1-frame options.
机译:通过整合垂直图像和倾斜图像来重建3D模型已被广泛研究。对于3D重建,可以使用从GPS / INS系统的直接定向数据获得的直接地理配准(DG)计算目标点云坐标。本文分别在以地球为中心的地球固定框架(e框架),局部切线框架(1框架)和地图投影框架(p框架)中实现了用于垂直和倾斜图像的DG方法。在p帧中,通过将倾斜图像自然化为垂直图像来推导地球曲率校正公式,从而获得较高的定位精度。对垂直和倾斜图像的五个基本立体对模型进行了仿真,以验证不同帧的定位精度。仿真实验表明,在这五个场景的电子帧和一帧中的DG都是严格的,并且由于DG模型是笛卡尔坐标的,因此没有引入系统误差。 p帧中的DG具有明显的系统误差,这些误差是由在垂直和水平方向上的地球曲率和投影变形不整合引起的。但是,通过扩展标准图像坐标校正方法和外部方向(EO)高度项,可以通过校正倾斜图像的图像坐标来有效地补偿这些误差。校正后,模拟测试1的绝对定位误差小于1/20 GSD。在p帧中,该过程很简单,并且很容易生成地图。但是,对于高精度DG,建议采用e帧或1帧选项。

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  • 作者单位

    Key Laboratory of Digital Earth Science, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, China;

    Key Laboratory of Digital Earth Science, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, China;

    Department of Geography, University of Wisconsin-Milwaukee, Milwaukee, WI 53201, USA;

    Key Laboratory of Digital Earth Science, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, China;

    Key Laboratory of Digital Earth Science, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, China;

    Key Laboratory of Digital Earth Science, Institute of Remote Sensing and Digital Earth, Chinese Academy of Sciences, Beijing 100094, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Oblique camera; Oblique imagery; Direct georeferencing; GPS/INS; 3D reconstruction; Map projection frame;

    机译:斜相机斜影像;直接地理配准;GPS / INS;3D重建;地图投影架;
  • 入库时间 2022-08-18 03:34:15

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