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The on-orbit calibration of geometric parameters of the Tian-Hui 1 (TH-1) satellite

机译:天辉1号(TH-1)卫星的几何参数在轨校准

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摘要

The on-orbit calibration of geometric parameters is a key step in improving the location accuracy of satellite images without using Ground Control Points (GCPs). Most methods of on-orbit calibration are based on the self-calibration using additional parameters. When using additional parameters, different number of additional parameters may lead to different results. The triangulation bundle adjustment is another way to calibrate the geometric parameters of camera, which can describe the changes in each geometric parameter. When triangulation bundle adjustment method is applied to calibrate geometric parameters, a prerequisite is that the strip model can avoid systematic deformation caused by the rate of attitude changes. Concerning the stereo camera, the influence of the intersection angle should be considered during calibration. The Equivalent Frame Photo (EFP) bundle adjustment based on the Line-Matrix CCD (LMCCD) image can solve the systematic distortion of the strip model, and obtain high accuracy location without using GCPs. In this paper, the triangulation bundle adjustment is used to calibrate the geometric parameters of TH-1 satellite cameras based on LMCCD image. During the bundle adjustment, the three line array cameras are reconstructed by adopting the principle of inverse triangulation. Finally, the geometric accuracy is validated before and after on-orbit calibration using 5 testing fields. After on-orbit calibration, the 3D geometric accuracy is improved to 11.8 m from 170 m. The results show that the location accuracy of TH-1 without using GCPs is significantly improved using the on-orbit calibration of the geometric parameters. (C) 2017 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:在不使用地面控制点(GCP)的情况下,几何参数的在轨校准是提高卫星图像定位精度的关键步骤。在轨校准的大多数方法都是基于使用附加参数的自校准。使用附加参数时,不同数量的附加参数可能会导致不同的结果。三角剖分束调整是校准相机几何参数的另一种方法,它可以描述每个几何参数的变化。当采用三角剖分束调整方法校准几何参数时,前提是带状模型可以避免由姿态变化率引起的系统变形。关于立体摄像机,在校准过程中应考虑相交角的影响。基于行矩阵CCD(LMCCD)图像的等效帧照片(EFP)束调整可以解决带状模型的系统失真,并且无需使用GCP即可获得高精度定位。在本文中,三角剖分束调整用于基于LMCCD图像校准TH-1卫星摄像机的几何参数。在束调整过程中,采用反三角剖分的原理重建了三线阵列相机。最后,使用5个测试场对在轨校准前后的几何精度进行验证。在轨校准后,3D几何精度从170 m提高到11.8 m。结果表明,通过对几何参数的在轨校准,不使用GCP的TH-1的定位精度得到了显着提高。 (C)2017国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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    State Key Lab Geoinformat Engn, Xian 710054, Shaanxi, Peoples R China|Xian Inst Surveying & Mapping, Xian 710054, Shaanxi, Peoples R China|Univ Twente, Fac Geoinformat Sci & Earth Observat ITC, NL-7500 AE Enschede, Netherlands;

    State Key Lab Geoinformat Engn, Xian 710054, Shaanxi, Peoples R China|Xian Inst Surveying & Mapping, Xian 710054, Shaanxi, Peoples R China;

    State Key Lab Geoinformat Engn, Xian 710054, Shaanxi, Peoples R China|Xian Inst Surveying & Mapping, Xian 710054, Shaanxi, Peoples R China;

    Univ Twente, Fac Geoinformat Sci & Earth Observat ITC, NL-7500 AE Enschede, Netherlands|CTGU, Coll Hydraul & Environm Engn, Yichang, Peoples R China;

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  • 正文语种 eng
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  • 关键词

    Satellite photogrammetry; On-orbit calibration; LMCCD camera; Triangulation bundle adjustment; Location accuracy; Space resection;

    机译:卫星摄影测量法;在轨校准;LMCCD相机;三角测量束调整;定位精度;空间切除;

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