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Robust Geometric Self-Calibration of Generic Multi-Projector Camera Systems

机译:通用多投影仪相机系统的稳健几何自校准

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Calibration of multi-projector-camera systems (MPCS) is a cumbersome and time-consuming process. It is of great importance to have robust, fast and accurate calibration procedures at hand for a wide variety of practical applications. We propose a fully automated self-calibration method for arbitrarily complex MPCS. It enables reliable and accurate intrinsic and extrinsic calibration without any human parameter tuning. We evaluated the proposed methods using more than ten multi-projection datasets ranging from a toy castle set up consisting of three cameras and one projector up to a half dome display system with more than 30 devices. Comparisons to reference calibrations, which were generated using the standard checkerboard calibration approach [44], show the reliability of our proposed pipeline, while a ground truth evaluation also shows that the resulting reconstructed point cloud accurately matches the shape of the reference geometry. Besides being fully automatic without the necessity of parameter fine tuning, the proposed method also significantly reduces the installation time of MPCS compared to checkerboard-based methods and makes it more suitable for real-world applications.
机译:多投影仪相机系统(MPCS)的校准是一个麻烦且耗时的过程。拥有适用于各种实际应用的可靠,快速和准确的校准程序非常重要。我们为任意复杂的MPCS提出了一种全自动的自校准方法。它可以进行可靠,准确的内部和外部校准,而无需任何人工参数调整。我们使用十多个多投影数据集评估了所提出的方法,这些数据集包括一个由三台摄像机和一台投影仪组成的玩具城堡,以及具有30多个设备的半球形显示系统。与使用标准棋盘格校准方法[44]生成的参考校准的比较显示了我们提出的管道的可靠性,而地面实况评估还显示了所生成的重构点云与参考几何形状精确匹配。除了不需要参数微调的全自动操作之外,与基于棋盘的方法相比,该方法还大大减少了MPCS的安装时间,使其更适合于实际应用。

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