Integrated Independent Geometric Calibration of Stereo Cameras Aboard an Optical Satellite

Y. Pi, Bo Yang, Rui Chen, Xin Li
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Abstract

Geometric calibration (GC) is a technique to compensate for the systematic errors in the imaging model of an optical satellite. The independent GC method without use of ground calibration site has been studied in recent years. In this paper, an integrated independent method aiming to the GC of stereo cameras aboard an optical satellite is presented. Supported by the satellite's stereo imaging ability, this method can overcome the strong correlation between the elevation error and camera GC accuracy, and get rid of the dependency on the constraints of ground elevation further. The real data collected by the stereo three-linear camera (TLC) of ZY-3 satellite was used to verify this method. The satisfactory GC accuracy better than 1 pixel indicated that the presented method effectively compensated for systematic errors, and improved the geometric quality of TLC images together.
光学卫星上立体相机的集成独立几何标定
几何定标(GC)是一种补偿光学卫星成像模型系统误差的技术。近年来,人们对不使用地面定标场地的独立气相色谱法进行了研究。本文提出了一种针对光学卫星上立体相机GC的综合独立方法。在卫星立体成像能力的支持下,该方法克服了高程误差与相机GC精度相关性强的问题,进一步摆脱了对地面高程约束的依赖。利用ZY-3卫星立体三线相机(TLC)采集的实际数据对该方法进行了验证。结果表明,该方法有效地补偿了系统误差,提高了TLC图像的几何质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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