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A RIGOROUS AND FLEXIBLE CALIBRATION METHOD FOR DIGITAL AIRBORNE CAMERA SYSTEMS

机译:用于数字空中相机系统的严格灵活的校准方法

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This paper presents a novel family of rigorous and flexible mathematical self-calibration additional parameters (APs) for airborne camera calibration. It is pointed out, that photogrammetric self-calibration can - to a very large extent - be considered as a function approximation problem in mathematics. Based on the mathematical approximation theory, we suggest that Fourier series (trigonometric polynomials) be the optimal mathematical basis functions for camera self-calibration. The whole family of so-called Fourier Self-calibration APs is developed, whose solid theoretical foundations are Laplace Equation and Fourier Theorem. The Fourier APs are mathematically rigorous, orthogonal, flexible, generic and efficient for calibrating the image distortion of frame-format airborne cameras. We show the theoretical and practical advantages of Fourier APs over the popular polynomial APs and physical APs. The good performance of Fourier APs is illustrated in the many practical tests on camera system calibration, including the DMC, DMCII, UltracamX, UltracamXp, DigiCAM cameras.
机译:本文介绍了一种新颖的严格和灵活的数学自我校准附加参数(APS),用于空降相机校准。它被指出,摄影测量自校准可以 - 在很大程度上 - 被认为是数学中的函数近似问题。基于数学近似理论,我们建议傅里叶系列(三角型多项式)是相机自校准的最佳数学基函数。开发了整个所谓的傅里叶自我校准APS,其稳定的理论基础是拉普拉斯方程和傅立叶定理。傅立叶AP在数学上是严格的,正交,灵活,通用和有效,用于校准框架格式空机相机的图像失真。我们展示了傅立叶APS在流行多项式AP和物理AP上的理论和实际优势。傅立叶AP的良好性能在相机系统校准的许多实际测试中说明,包括DMC,DMCII,Ultracamx,Ultracamxp,DigiCam摄像机。

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