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Transformation method of exterior orientation angular elements obtained via position and orientation system under Gauss-Kruger projection coordinate system

机译:高斯-克鲁格投影坐标系下通过位置和方位系统获得的外部方位角元素的变换方法

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Data obtained via airborne position and orientation system (POS) is in WGS 84 global geocentric reference frame, while the national coordinate reference system for topographic mapping in China is generally Gauss-Kruger projection coordinate system. Therefore, data obtained via a POS must be transformed to national coordinate system. Owing to the effects of earth curvature and meridian deviation, there are some errors in the process of angle transformation from roll, pitch, and heading (Φ,Θ,Ψ) obtained directly via a POS to the attitude angles of images (φ,ω,κ) needed in photogrammetry. On the basis of effect theories of earth curvature and meridian deviation on exterior orientation angular elements of images, a method using a compensation matrix to correct the transformation errors from attitude angles obtained via the POS to exterior orientation angular elements of images is proposed in this paper. Moreover, the rigorous formula of the compensation matrix is deduced. Two sets of actual data obtained via a POS AV 510, which are different in scale and terrain, are selected and used to perform experiments. The empirical results not only indicate that the compensation matrix proposed in this paper is correct and practical but also show that transformation accuracy of exterior orientation angular elements obtained via the POS based on compensation matrix is relevant to the selection of vertical axis (a projection of central meridian) of Gauss-Kruger projection coordinate system; the proper vertical axis should be the Gauss-Kruger projection of the central meridian of projection zone in which the survey area locates. However, the transformation accuracy of exterior orientation angular elements is irrelevant to the choice of origin of coordinate system; it is appropriate that the origin of coordinate system locates at the center point of the survey area. Moreover, transformation accuracy of exterior orientation angular elements achieved based on the compensation matrix deduced in this paper is higher than that obtained via the existing POS processing software.
机译:通过机载位置和方向系统(POS)获得的数据位于WGS 84全球地心参考系中,而中国地形图的国家坐标参考系通常是高斯-克鲁格投影坐标系。因此,必须将通过POS获得的数据转换为国家坐标系。由于地球曲率和子午线偏差的影响,从POS直接获得的从横摇,俯仰和航向(Φ,Θ,Ψ)到图像的姿态角(φ,ω)的角度转换过程中存在一些误差,κ)摄影测量中需要。基于地球曲率和子午线偏差对图像外部方位角元素的影响理论,提出一种利用补偿矩阵校正从POS获得的姿态角到图像外部方位角元素的变换误差的方法。 。此外,推导了补偿矩阵的严格公式。选择通过POS AV 510获得的两组实际数据,它们在比例和地形上有所不同,并用于执行实验。实验结果不仅表明本文提出的补偿矩阵是正确和实用的,而且表明基于补偿矩阵的POS所获得的外部方位角元素的变换精度与垂直轴的选择有关(中心点的投影)。经络)的高斯-克鲁格投影坐标系;正确的垂直轴应该是测量区域所在的投影区域的中央子午线的高斯-克鲁格投影。但是,外部方位角元素的变换精度与坐标系原点的选择无关。坐标系的原点位于测量区域的中心点是适当的。此外,基于本文推导的补偿矩阵实现的外部方位角元素的变换精度高于通过现有POS处理软件获得的变换精度。

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