Iterative multi-step explicit camera calibration

Jorge Batista, Helder Sabino de Araújo, A. T. Almeida
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引用次数: 65

Abstract

Perspective camera calibration has been in the last decades a research subject for a large group of researchers and as a result several camera calibration methodologies can be found in the literature. However only a small number of those methods base their approaches on the use of monoplane calibration points. This paper describes one of those methodologies that uses monoplane calibration points to realize an explicit 3D camera calibration. To avoid the singularity obtained with the calibration equations when monoplane calibration points are used, this method computes the calibration parameters in a multi-step procedure and requires a first-guess solution for the intrinsic parameters. These parameters are updated and their accuracy increased through an iterative procedure. A stability analysis as a function of the pose of the camera is presented. Camera pose view strategies for accurate camera orientation computation can be extracted from the pose view stability analysis.
迭代多步显式摄像机标定
在过去的几十年里,透视相机校准一直是一大批研究人员的研究课题,因此在文献中可以找到几种相机校准方法。然而,这些方法中只有一小部分是基于单面标定点的。本文介绍了一种利用单面标定点实现显式三维摄像机标定的方法。为避免单平面标定点时标定方程产生的奇异性,该方法采用多步计算方法计算标定参数,并要求对固有参数进行初步求解。通过迭代过程更新这些参数并提高其精度。给出了作为摄像机姿态函数的稳定性分析。从姿态视图稳定性分析中提取出精确的摄像机姿态视图策略。
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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