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Mapping gray-scale image to 3D surface scanning data by ray tracing,

机译:通过光线跟踪将灰度图像映射到3D表面扫描数据,

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Abstract: The extraction and location of feature points from range imaging is an important but difficult task in machine vision based measurement systems. There exist some feature points which are not able to be detected from pure geometric characteristics, particularly in those measurement tasks related to the human body. The Loughborough Anthropometric Shadow Scanner (LASS) is a whole body surface scanner based on structured light technique. Certain applications of LASS require accurate location of anthropometric landmarks from the scanned data. This is sometimes impossible from existing raw data because some landmarks do not appear in the scanned data. Identification of these landmarks has to resort to surface texture of the scanned object. Modifications to LASS were made to allow gray-scale images to be captured before or after the object was scanned. Two-dimensional gray-scale image must be mapped to the scanned data to acquire the 3D coordinates of a landmark. The method to map 2D images to the scanned data is based on the colinearity conditions and ray-tracing method. If the camera center and image coordinates are known, the corresponding object point must lie on a ray starting from the camera center and connecting to the image coordinate. By intersecting the ray with the scanned surface of the object, the 3D coordinates of a point can be solved. Experimentation has demonstrated the feasibility of the method. !12
机译:摘要:在基于机器视觉的测量系统中,距离成像的特征点提取和定位是一项重要但艰巨的任务。存在一些无法从纯几何特征中检测到的特征点,尤其是在与人体有关的那些测量任务中。拉夫堡人体阴影扫描仪(LASS)是基于结构光技术的全身表面扫描仪。 LASS的某些应用需要从扫描数据中准确定位人体特征界标。从现有的原始数据有时是不可能的,因为某些地标没有出现在扫描的数据中。这些地标的识别必须诉诸扫描对象的表面纹理。对LASS进行了修改,以允许在扫描对象之前或之后捕获灰度图像。二维灰度图像必须映射到扫描数据以获取界标的3D坐标。将2D图像映射到扫描数据的方法是基于共线性条件和光线跟踪方法。如果已知相机中心和图像坐标,则相应的对象点必须位于从相机中心开始并连接到图像坐标的光线上。通过将射线与对象的扫描表面相交,可以求解点的3D坐标。实验证明了该方法的可行性。 !12

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