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Efficient generic calibration method for general cameras with single centre of projection

机译:单投影中心的通用相机的高效通用校准方法

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Generic camera calibration is a non-parametric calibration technique that is applicable to any type of vision sensor. However, the standard generic calibration method was developed such that both central and non-central cameras can be calibrated within the same framework. Consequently, existing parametric calibration techniques cannot be applied for the common case of cameras with a single centre of projection (e.g. pinhole, fisheye, hyperboloidal catadioptric). This paper proposes improvements to the standard generic calibration method for central cameras that reduce its complexity, and improve its accuracy and robustness. Improvements are achieved by taking advantage of the geometric constraints resulting from a single centre of projection in order to enable the application of established pinhole calibration techniques. Input data for the algorithm is acquired using active grids, the performance of which is characterised. A novel linear estimation stage is proposed that enables a well established pinhole calibration technique to be used to estimate the camera centre and initial grid poses. The proposed solution is shown to be more accurate than the linear estimation stage of the standard method. A linear alternative to the existing polynomial method for estimating the pose of additional grids used in the calibration is demonstrated and evaluated. Distortion correction experiments are conducted with real data for both an omnidirectional camera and a fisheye camera using the standard and proposed methods. Motion reconstruction experiments are also undertaken for the omnidirectional camera. Results show the accuracy and robustness of the proposed method to be improved over those of the standard method.
机译:通用相机校准是一种非参数校准技术,适用于任何类型的视觉传感器。但是,开发了标准的通用校准方法,以便可以在同一框架内校准中央和非中央摄像机。因此,现有的参数校准技术无法应用于具有单个投影中心(例如针孔,鱼眼,双曲面折反射)的摄像机的常见情况。本文提出了对中央摄像机的标准通用校准方法的改进,以降低其复杂性,并提高其准确性和鲁棒性。通过利用由单个投影中心产生的几何约束来实现改进,以便能够应用已建立的针孔校准技术。使用活动网格获取算法的输入数据,并对其性能进行表征。提出了一种新颖的线性估计阶段,该阶段使得能够使用完善的针孔校准技术来估计摄像机中心和初始网格姿态。结果表明,所提出的解决方案比标准方法的线性估计阶段更准确。演示并评估了现有多项式方法的线性替代方法,该方法用于估算校准中使用的其他网格的姿态。使用标准方法和拟议方法对全向摄像机和鱼眼镜头的真实数据进行失真校正实验。还对全向摄像机进行了运动重建实验。结果表明,与标准方法相比,该方法的准确性和鲁棒性有所提高。

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