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Improvement of Camera Calibration Accuracy Based on Periodic Arrangement Characteristics of Calibration Target Pattern

机译:基于标定目标图案周期性排列特征的相机标定精度的提高

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摘要

Conventional camera calibration that employs calibration targets is a commonly used method to acquire a camera's intrinsic and/or extrinsic parameters.The calibration targets are usually designed as periodic arrays of simple high-contrast patterns that provide highly accurate world coordinate system points and the corresponding image pixel coordinate system points.The existing pixel coordinate extraction algorithms can reach a sub-pixel level;however,they treat each single pattern in one image as an independent individual,which makes it difficult to further improve extraction accuracy.In this paper,a novel method is proposed by utilizing the periodic arrangement characteristics of the calibration target pattern as a global constraint to improve the calibration accuracy.Based on a camera's pinhole model,the intersection point of two fitted curves is used as an optimized pixel point to replace the initial one.Following the pixel coordinate optimization procedures,experiments were performed using real data from a 3D laser line scanner and a dynamic precision calibration target.Our results show that the relative errors of camera homography matrix elements obtained by the proposed optimization method were reduced compared with the commonly used method.The average coordinate measurement accuracy can be improved by nearly 0.05 mm.It is shown that the proposed optimization method can enhance the camera calibration accuracy,especially when the extracted pixels are of poorer precision.
机译:采用校准目标的传统相机校准是常用的方法,用于获取相机的内在和/或外在参数。校准目标通常被设计为单个简单的高对比度模式阵列,提供高度精确的世界坐标系点和相应的图像像素坐标系点。现有像素坐标提取算法可以达到子像素级别;然而,它们将每个单个图案视为独立的个体,这使得难以进一步提高提取精度。本文,一种新颖通过利用校准目标图案的周期性布置特性作为全局约束来提出方法,以提高校准精度。基于相机的针孔模型,两个拟合曲线的交叉点用作优化的像素点以替换初始的像素点以替换初始像素点。采用像素坐标优化过程,执行实验使用来自3D激光线扫描仪的真实数据和动态精确校准目标。结果表明,与常用的方法相比,通过所提出的优化方法获得的相机配位矩阵元素的相对误差。平均坐标测量精度可以得到近0.05毫米的提高。表明所提出的优化方法可以提高相机校准精度,尤其是当提取的像素较差的精度时。

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  • 来源
    《天津大学学报(英文版)》 |2017年第6期|582-590|共9页
  • 作者单位

    School of Precision Instruments and Opto-Electronics Engineering,Tianjin University,Tianjin 300072,China;

    Key Laboratory of Opto-Electronics Information Technology of Ministry of Education,Tianjin 300072,China;

    School of Precision Instruments and Opto-Electronics Engineering,Tianjin University,Tianjin 300072,China;

    Key Laboratory of Opto-Electronics Information Technology of Ministry of Education,Tianjin 300072,China;

    School of Precision Instruments and Opto-Electronics Engineering,Tianjin University,Tianjin 300072,China;

    Key Laboratory of Opto-Electronics Information Technology of Ministry of Education,Tianjin 300072,China;

    School of Precision Instruments and Opto-Electronics Engineering,Tianjin University,Tianjin 300072,China;

    Key Laboratory of Opto-Electronics Information Technology of Ministry of Education,Tianjin 300072,China;

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  • 入库时间 2022-08-19 03:40:00
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