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首页> 外文期刊>Optics and Lasers in Engineering >Flexible camera-projector calibration using superposed color checkerboards
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Flexible camera-projector calibration using superposed color checkerboards

机译:使用叠加的彩色棋盘进行灵活的摄像机-投影仪校准

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摘要

Camera-projector calibration is essential in structured-light systems for three-dimensional imaging. A prevalent difficulty for calibration is that two different checkerboards must be captured. First, a physical checkerboard on the reference plane is required to obtain the camera parameters. Second, the physical checkerboard must be removed because it interferes with the projected pattern required to obtain the projector parameters. These requirements can be reduced if the camera is previously calibrated or specific arrangements are considered. However, the calibration procedure is very impractical and susceptible to misalignment errors. In this paper, a flexible camera-projector calibration method without any constraint on the position and orientation of the camera, the projector, and the reference plane, is proposed. For this, a physical checkerboard of a specific color is placed on the reference plane while the projector device projects another checkerboard with a different color. From an image captured by the camera, the two superposed checkerboards are recovered using the color information. In this way, the homographies required for calibration of both the camera and the projector are obtained simultaneously. The performance of the proposed method is verified experimentally by measuring the three-dimensional surface of three objects. Because of its high flexibility and accuracy, the proposed method is useful for in situ calibration of structured-light systems for three-dimensional imaging applications.
机译:相机-投影仪校准在用于三维成像的结构光系统中至关重要。校准的普遍困难是必须捕获两个不同的棋盘格。首先,需要在参考平面上使用物理棋盘格来获取相机参数。其次,必须移除物理棋盘,因为它会干扰获得投影仪参数所需的投影图案。如果事先对摄像机进行了校准或考虑了特定的布置,则可以减少这些要求。但是,校准程序非常不切实际,并且容易出现未对准错误。本文提出了一种灵活的相机-投影仪校准方法,该方法对相机,投影仪和参考平面的位置和方向没有任何限制。为此,将特定颜色的物理棋盘放置在参考平面上,同时投影仪设备投影另一种颜色不同的棋盘。从摄像机捕获的图像中,使用颜色信息恢复两个重叠的棋盘格。以此方式,同时获得了校准照相机和投影仪所需的单应性。通过测量三个物体的三维表面,实验验证了该方法的性能。由于其高灵活性和准确性,所提出的方法可用于三维成像应用的结构光系统的原位校准。

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