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Camera calibration method with checkerboard pattern under complicated illumination

机译:复杂照明下具有棋盘格图案的摄像机标定方法

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摘要

Camera calibration is a key step in three-dimensional (3-D) reconstruction; however, the calibration accuracy and stability often suffer from complicated illumination in real applications. The camera calibration method using the checkerboard pattern is improved for high-precision calibration under complicated illumination. First, an improved Harris corner detector based on color constancy, as well as a subpixel optimization method based on prior knowledge of the checkerboard, are proposed to overcome the influence of bad lighting. Second, a checkerboard pattern with a central circle point is designed for better reference point location for uneven illumination. The checkerboard identification by Delaunay triangulation is also improved for the situation of discontinuity caused by over-saturation. Finally, the camera parameter optimization process is improved to reduce the calibration error produced by complicated illumination. Experimental results show that the improvements achieve more accurate and stable calibration results in complicated lighting conditions compared with traditional methods. (C) 2018 SPIE and IS&T
机译:相机校准是三维(3-D)重建的关键步骤;然而,在实际应用中,校准精度和稳定性通常会遭受复杂的照明。改进了使用棋盘图案的相机校准方法,以在复杂照明下进行高精度校准。首先,提出了一种改进的基于颜色恒定性的哈里斯角检测器,以及一种基于棋盘先验知识的子像素优化方法,以克服不良照明的影响。其次,设计一个带有中心圆点的棋盘图案,以更好地定位参考点,以实现不均匀的照明。通过Delaunay三角剖分的棋盘格识别功能也可以针对因过饱和而导致的不连续性情况进行改进。最后,改进了相机参数优化过程,以减少复杂照明产生的校准误差。实验结果表明,与传统方法相比,该改进方法在复杂的光照条件下可以获得更准确,更稳定的校准结果。 (C)2018 SPIE和IS&T

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