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HIGH-RESOLUTION SURFACE RECONSTRUCTION FROM IMAGERY FOR CLOSE RANGE CULTURAL HERITAGE APPLICATIONS

机译:近距离文化遗产应用的图像高分辨率表面重建

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The recording of high resolution point clouds with sub-mm resolution is a demanding and cost intensive task, especially with current equipment like handheld laser scanners. We present an image based approached, where techniques of image matching and dense surface reconstruction are combined with a compact and affordable rig of off-the-shelf industry cameras. Such cameras provide high spatial resolution with low radiometric noise, which enables a one-shot solution and thus an efficient data acquisition while satisfying high accuracy requirements. However, the largest drawback of image based solutions is often the acquisition of surfaces with low texture where the image matching process might fail. Thus, an additional structured light projector is employed, represented here by the pseudo-random pattern projector of the Microsoft Kinect. Its strong infrared-laser projects speckles of different sizes. By using dense image matching techniques on the acquired images, a 3D point can be derived for almost each pixel. The use of multiple cameras enables the acquisition of a high resolution point cloud with high accuracy for each shot. For the proposed system up to 3.5 Mio. 3D points with sub-mm accuracy can be derived per shot. The registration of multiple shots is performed by Structure and Motion reconstruction techniques, where feature points are used to derive the camera positions and rotations automatically without initial information.
机译:具有亚mm分辨率的高分辨率点云的记录是一种苛刻和成本的密集任务,尤其是当前设备,如手持式激光扫描仪。我们介绍了一种基于图像的接近,其中图像匹配和致密的表面重建技术与现成的现成行业相机的紧凑型和实惠的钻井平台相结合。这种相机提供具有低辐射噪声的高空间分辨率,这使得一次性解决方案能够实现高效的数据采集,同时满足高精度要求。然而,基于图像的解决方案的最大缺点通常是获取具有低纹理的表面,其中图像匹配过程可能失败。因此,采用了另外的结构化光投影仪,由Microsoft Kinect的伪随机图案投影仪表示。其强大的红外激光突出斑点不同的尺寸。通过在所获取的图像上使用致密图像匹配技术,可以为几乎每个像素导出3D点。多个摄像机的使用使得能够为每次拍摄的高精度获取高分辨率点云。拟议的系统高达3.5 mio.每次射击可以导出具有子MM精度的3D点。通过结构和运动重建技术执行多个镜头的登记,其中特征点用于自动导出相机位置和旋转而没有初始信息。

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