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A Device for Capturing Inward-Looking Spherical Light Fields

机译:一种用于捕获向内的球形光场的装置

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We propose a calibration methodology for a novel type of inward-looking spherical light field acquisition device comprised of a moving CMOS camera with two angular degrees of freedom around an object. We designed a calibration cube covered with ChArUco markers to resolve viewpoint ambiguity. Our calibration model includes 20 unknowns describing the spherical parameters and the camera's geometrical and internal properties. These parameters are jointly optimized to reduce the reprojection error of the calibration cube's markers from multiple viewpoints, resulting in a model that can predict the pose of the camera from any other viewpoint. We successfully tested this calibrated model with a photogrammetry experiment followed by view synthesis of novel views using the resulting depth maps. Results show that the reconstructed image is highly accurate when compared to a real-life capturing of the same view.
机译:我们提出了一种用于一种新颖的向内的向内球形光场采集装置的校准方法,包括移动CMOS相机,其周围的具有两个角度自由度。我们设计了一种覆盖着Charuco标记的校准立方体,以解决观点歧义。我们的校准模型包括描述球形参数和相机几何和内部属性的20个未知数。这些参数共同优化,以减少来自多个观点的校准立方体标记的重注错误,从而导致模型可以从任何其他观点预测相机的姿势。我们成功使用摄影测量实验测试了这种校准模型,然后使用得到的深度图查看了新颖视图的合成。结果表明,与相同视图的真实捕获相比,重建图像是高度准确的。

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