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Multi-projector Calibration and Alignment Using Flatness Analysis for Irregular-Shape Surfaces

机译:使用平面分析对不规则形状表面的多投影仪校准和对准

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A multi-projector calibration and alignment method, which has no assumptions on projection surfaces' shape, is presented. Based on surface flatness analysis, the method will automatically partition the projection surface into pieces, more at none flat regions and less at flat ones, as flat region will cause less distortions. Corresponding to these pieces, an image will first be cut into some sub-images, and then projected onto the surfaces using texture warping method. The principle which ensures the inner projector distortion correction is proved, that is if a camera captures an undistorted projected image, human eye will also observe an undistorted one at that spot. Multi-projector alignment is achieved by projecting images which are rendered according to the camera's extrinsic parameters during the course of coded structured light capturing. Because the camera can capture a wide field of view area by moving and rotating itself, the alignment method has a build-in support for scalability in view filed. The whole work of calibration and alignment can be done in a single camera capture process. Results show that the proposed method is efficient and robust.
机译:提出了一种多投影仪校准和对准方法,其在投影表面的形状上没有假设。基于表面平坦度分析,该方法将自动将投影表面分隔成块,更多在没有平坦区域,并且在平坦的区域上更少,因为平坦区域会导致较小的扭曲。对应于这些部分,将首先将图像切割成一些子图像,然后使用纹理翘曲方法投射到表面上。确保内部投影仪失真校正的原理是证明,如果相机捕获未变异的投影图像,则人眼也将在该点观察一个未置于的一个。通过在编码的结构光捕获过程中投影根据相机的外在参数呈现的图像来实现多投影仪对准。由于相机可以通过移动和旋转自身捕获宽视野区域,所以对准方法具有用于升放的可伸缩性的构建支持。校准和对准的整个工作可以在单个相机捕​​获过程中完成。结果表明,该方法具有高效且稳健。

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