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3D reconstruction of specular surfaces using a calibrated projector-camera setup

机译:使用校准的投影机-相机设置对镜面进行3D重建

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摘要

Structured light is widely used for shape measurement of beamless surfaces using the triangulation principle. In the case of specular surfaces deflectometry is an appropriate method. Hereby the reflection of a light pattern is observed by a camera. The distortion of the reflected pattern is evaluated to obtain information about the reflecting surface. An important requirement for a 3d reconstruction of a specular surface by deflectometry is a calibrated measurement setup. We propose a method for the overall calibration of a setup consisting of a structured light source, a projection screen and a camera. We consider all extrinsic and intrinsic parameters for the optical mapping including a distortion model for the projector and for the camera, respectively. Given the deflectometric data obtained by the calibrated setup two methods are described which allow the 3d reconstruction of points on a specular surface. This is not trivial as a reconstruction using solely deflectometric data shows ambiguity. In the first method screen displacement between two deflectometric measurements is used to overcome this ambiguity. In the second method curvature-like features on the surface are determined to serve as starting points for a region growing approach. Results of the reconstruction of a specular surface are shown and the performance of the described reconstruction methods are compared to each other.
机译:使用三角测量原理,结构光被广泛用于无光束表面的形状测量。对于镜面表面,挠度法是一种合适的方法。因此,照相机观察到光图案的反射。评估反射图案的变形以获得关于反射表面的信息。通过偏转法对镜面进行3d重建的一个重要要求是校准的测量设置。我们提出了一种对结构进行整体校准的方法,该结构包括结构化光源,投影屏和照相机。我们考虑光学映射的所有外部参数和固有参数,分别包括投影仪和相机的变形模型。给定通过校准设置获得的偏转数据,将描述两种方法,可对镜面上的点进行3d重建。这并非无关紧要,因为仅使用挠度测量数据进行的重建就显示出模棱两可。在第一种方法中,使用两个偏转测量之间的屏幕位移来克服这种歧义。在第二种方法中,将表面上的曲率状特征确定为区域生长方法的起点。显示了镜面表面的重建结果,并将所描述的重建方法的性能进行了比较。

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