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首页> 外文期刊>International Archives of the Photogrammetry, Remote Sensing and Spatial Information Sciences >SATELLITE IMAGING DIRECTION ANGLES ESTIMATION METHOD BASED ON RATIONAL POLYNOMIAL COEFFICIENTS
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SATELLITE IMAGING DIRECTION ANGLES ESTIMATION METHOD BASED ON RATIONAL POLYNOMIAL COEFFICIENTS

机译:基于合理多项式系数的卫星成像方向角估计方法

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Satellite imaging direction angles, including the azimuth angle and the incidence angle, are the basic information used for satellite camera network structure analysis. They play an important role in 3D reconstruction using satellite images. In this paper, a satellite imaging direction angle estimation method based on rational polynomial coefficients is proposed for use when the satellite imaging direction angles are not available. Using rational polynomial coefficients, a vertical line on the ground is projected into the image plane, and the satellite imaging direction angles are estimated by analyzing the projection. Satellite images acquired by SPOT6, SOPT7 and Pleiades with different satellite imaging direction angles were used to test the feasibility of the proposed method. The experimental results were analyzed in detail combined with the method and the data. The experimental results show that the azimuth angle estimation error is less than 1.30 degrees, and the incidence angle estimation error is less than 0.83 degrees. This level of accuracy is sufficient for satellite camera network structure analysis.
机译:卫星成像方向角度,包括方位角和入射角,是用于卫星相机网络结构分析的基本信息。它们在使用卫星图像中在3D重建中发挥着重要作用。本文提出了一种基于合理多项式系数的卫星成像方向角度估计方法,用于使用卫星成像方向角度。使用Rational多项式系数,将地面上的垂直线投影到图像平面中,并且通过分析投影来估计卫星成像方向角。使用不同卫星成像方向角度的Spot6,Sopt7和Pleiades获取的卫星图像用于测试所提出的方法的可行性。详细分析了实验结果与方法和数据相结合。实验结果表明,方位角估计误差小于1.30度,入射角估计误差小于0.83度。这种精度水平足以用于卫星相机网络结构分析。

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