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Zoom lens calibration with zoom- and focus-related intrinsic parameters applied to bundle adjustment

机译:变焦镜头校准,将与变焦和聚焦相关的固有参数应用于束调整

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A zoom lens is more flexible for photogrammetric measurements under diverse environments than a fixed lens. However, challenges in calibration of zoom-lens cameras preclude the wide use of zoom lenses in the field of close-range photogrammetry. Thus, a novel zoom lens calibration method is proposed in this study. In this method, instead of conducting modeling after monofocal calibrations, we summarize the empirical zoom/focus models of intrinsic parameters first and then incorporate these parameters into traditional collinearity equations to construct the fundamental mathematical model, i.e., collinearity equations with zoom- and focus-related intrinsic parameters. Similar to monofocal calibration, images taken at several combinations of zoom and focus settings are processed in a single self-calibration bundle adjustment. In the self-calibration bundle adjustment, three types of unknowns, namely, exterior orientation parameters, unknown space point coordinates, and model coefficients of the intrinsic parameters, are solved simultaneously. Experiments on three different digital cameras with zoom lenses support the feasibility of the proposed method, and their relative accuracies range from 1:4000 to 1:15,100. Furthermore, the nominal focal length written in the exchangeable image file header is found to lack reliability in experiments. Thereafter, the joint influence of zoom lens instability and zoom recording errors is further analyzed quantitatively. The analysis result is consistent with the experimental result and explains the reason why zoom lens calibration can never have the same accuracy as monofocal self-calibration. (C)) 2015 International Society for Photogrammetry and Remote Sensing, Inc. (ISPRS). Published by Elsevier B.V. All rights reserved.
机译:变焦镜头比固定镜头在各种环境下的摄影测量更灵活。然而,在变焦镜头相机的校准方面的挑战阻碍了变焦镜头在近距离摄影测量领域中的广泛使用。因此,本研究提出了一种新颖的变焦镜头标定方法。在这种方法中,我们不对单焦点校准后的模型进行建模,而是先总结内在参数的经验缩放/聚焦模型,然后将这些参数合并到传统的共线性方程中,以构建基本的数学模型,即具有缩放和聚焦的共线性方程。相关的固有参数。与单焦点校准类似,在单个自校准束调整中处理以缩放和聚焦设置的几种组合拍摄的图像。在自校准束调整中,同时求解了三种类型的未知数,即外部定向参数,未知空间点坐标和固有参数的模型系数。在三种不同的带变焦镜头的数码相机上进行的实验证明了该方法的可行性,其相对精度范围为1:4000至1:15,100。此外,发现写在可交换图像文件头中的标称焦距在实验中缺乏可靠性。此后,定量分析变焦镜头不稳定性和变焦记录误差的共同影响。分析结果与实验结果一致,并解释了变焦镜头校准永远无法具有与单焦点自校准相同的精度的原因。 (C))2015国际摄影测量与遥感学会(ISPRS)。由Elsevier B.V.发布。保留所有权利。

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