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A METHOD FOR SELF-CALIBRATION IN SATELLITE WITH HIGH PRECISION OF SPACE LINEAR ARRAY CAMERA

机译:具有高精度的卫星自校准方法,具有高精度的空间线性阵列相机

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At present, the on-orbit calibration of the geometric parameters of a space surveying camera is usually processed by data from a ground calibration field after capturing the images. The entire process is very complicated and lengthy and cannot monitor and calibrate the geometric parameters in real time. On the basis of a large number of on-orbit calibrations, we found that owing to the influence of many factors, e.g., weather, it is often difficult to capture images of the ground calibration field. Thus, regular calibration using field data cannot be ensured. This article proposes a real time self-calibration method for a space linear array camera on a satellite using the optical auto collimation principle. A collimating light source and small matrix array CCD devices are installed inside the load system of the satellite; these use the same light path as the linear array camera. We can extract the location changes of the cross marks in the matrix array CCD to determine the real-time variations in the focal length and angle parameters of the linear array camera. The on-orbit status of the camera is rapidly obtained using this method. On one hand, the camera's change regulation can be mastered accurately and the camera's attitude can be adjusted in a timely manner to ensure optimal photography; in contrast, self-calibration of the camera aboard the satellite can be realized quickly, which improves the efficiency and reliability of photogrammetric processing.
机译:目前,空间测量摄像机的几何参数的On-Orbit校准通常由来自捕获图像后的地面校准场的数据处理。整个过程非常复杂和冗长,无法实时监控和校准几何参数。在大量的轨道校准的基础上,我们发现由于许多因素的影响,例如天气,通常难以捕获地面校准场的图像。因此,无法确保使用现场数据进行定期校准。本文提出了一种使用光学自动准直原理在卫星上的空间线性阵列摄像机的实时自校准方法。准直光源和小矩阵阵列CCD器件安装在卫星的负载系统内;这些使用与线性阵列相机相同的光路。我们可以提取矩阵阵列CCD中的交叉标记的位置变化,以确定线性阵列相机的焦距和角度参数的实时变化。使用此方法快速获得相机的On-Orbit状态。一方面,可以准确掌握相机的变化调节,可以及时调整相机的姿态,以确保最佳摄影;相比之下,可以快速实现卫星上方的相机的自校准,从而提高了摄影测量处理的效率和可靠性。

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