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New procedure for qualification of structured light 3D scanners using an optical feature-based gauge

机译:使用基于光学特征的量规对结构光3D扫描仪进行鉴定的新程序

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摘要

This work evaluates the performance and operative limits to the dimensional accuracy of 3D optical scanning based on blue-light fringe projection technology. This technology, also known as structured light 3D scanning, is widely used in many reverse engineering applications. It allows the user to quickly capture and create point-clouds, by using images taken at different orientations of white-or blue-light fringe projected patterns on the part. For the survey, a large and feature-based gauge has been used with specific optical properties. The gauge is endowed with canonical geometrical features made of matt white ceramic material. The gauge was calibrated using a coordinate measuring machine (CMM) by contact. Therefore, it is possible to compare the measurements obtained by the structured blue-light sensor with those obtained by the CMM, which are used as reference. In the experimentation, the influence of the scanner software in the measurement results was also analysed. Besides, different tests were carried out for the different fields of view (FOV) of the sensor. The survey offers some practical values and limits to the accuracy obtained in each configuration.
机译:这项工作评估了基于蓝光条纹投影技术的3D光学扫描的尺寸精度的性能和操作限制。该技术也称为结构光3D扫描,已广泛用于许多逆向工程应用中。通过使用在零件上以白光或蓝光条纹投影图案的不同方向拍摄的图像,它允许用户快速捕获并创建点云。对于调查,已使用具有特定光学特性的大型,基于特征的量规。该仪表具有哑光白色陶瓷材料制成的规范几何特征。使用坐标测量机(CMM)通过接触仪校准量规。因此,可以将结构化蓝光传感器获得的测量结果与CMM获得的测量结果进行比较,以作为参考。在实验中,还分析了扫描仪软件对测量结果的影响。此外,针对传感器的不同视场(FOV)进行了不同的测试。该调查提供了一些实用值,并限制了每种配置中获得的精度。

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