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MODELING AND SIMULATION OF HIGH RESOLUTION OPTICAL REMOTE SENSING SATELLITE GEOMETRIC CHAIN

机译:高分辨率光学遥感卫星几何链的建模与仿真

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摘要

The high resolution satellite with the longer focal length and the larger aperture has been widely used in georeferencing of the observed scene in recent years. The consistent end to end model of high resolution remote sensing satellite geometric chain is presented, which consists of the scene, the three line array camera, the platform including attitude and position information, the time system and the processing algorithm. The integrated design of the camera and the star tracker is considered and the simulation method of the geolocation accuracy is put forward by introduce the new index of the angle between the camera and the star tracker. The model is validated by the geolocation accuracy simulation according to the test method of the ZY-3 satellite imagery rigorously. The simulation results show that the geolocation accuracy is within 25m, which is highly consistent with the test results. The geolocation accuracy can be improved about 7 m by the integrated design. The model combined with the simulation method is applicable to the geolocation accuracy estimate before the satellite launching.
机译:具有较长焦距和较大孔径的高分辨率卫星已广泛应用于近年来观察到的场景的地理造影。呈现了高分辨率遥感卫星几何链的一致结束模型,由场景,三线阵列摄像机,包括姿态和位置信息,时间系统和处理算法的平台组成。考虑了相机和明星跟踪器的集成设计,并通过在相机和星形跟踪器之间的角度的新索引上提出了地理定位精度的仿真方法。根据严格的ZY-3卫星图像的测试方法,通过地理定位精度模拟验证了该模型。仿真结果表明,地理定位精度在25米范围内,这与测试结果高度一致。通过集成设计可以提高地理位置精度约7米。该模型与仿真方法相结合,适用于卫星发射前的地理定位精度估计。

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