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Design and experimental validation of novel 3D optical scanner with zoom lens unit

机译:变焦镜头新型3D光学扫描仪的设计与实验验证

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摘要

Optical scanners play a key role in many three-dimensional (3D) printing and CAD/CAM applications. However, existing optical scanners are generally designed to provide either a wide scanning area or a high 3D reconstruction accuracy from a lens with a fixed focal length. In the former case, the scanning area is increased at the expense of the reconstruction accuracy, while in the latter case, the reconstruction performance is improved at the expense of a more limited scanning range. In other words, existing optical scanners compromise between the scanning area and the reconstruction accuracy. Accordingly, the present study proposes a new scanning system including a zoom-lens unit, which combines both a wide scanning area and a high 3D reconstruction accuracy. In the proposed approach, the object is scanned initially under a suitable low-magnification setting for the object size (setting 1), resulting in a wide scanning area but a poor reconstruction resolution in complicated regions of the object. The complicated regions of the object are then rescanned under a high-magnification setting (setting 2) in order to improve the accuracy of the original reconstruction results. Finally, the models reconstructed after each scanning pass are combined to obtain the final reconstructed 3D shape of the object. The feasibility of the proposed method is demonstrated experimentally using a laboratory-built prototype. It is shown that the scanner has a high reconstruction accuracy over a large scanning area. In other words, the proposed optical scanner has significant potential for 3D engineering applications.
机译:光学扫描仪在许多三维(3D)打印和CAD / CAM应用中起着关键作用。然而,现有的光学扫描仪通常被设计为从具有固定焦距的透镜提供宽扫描区域或高3D重建精度。在前一种情况下,扫描区域以牺牲重建精度的代价增加,而在后一种情况下,重建性能以更有限的扫描范围的代价提高。换句话说,现有的光学扫描仪在扫描区域和重建精度之间扰流。因此,本研究提出了一种新的扫描系统,包括缩放镜头单元,其结合了宽扫描区域和高3D重建精度。在所提出的方法中,最初在对象大小(设置1)的合适低放大率设置下扫描对象,从而扫描区域宽,但对象的复杂区域中的重建分辨率差。然后在高放大率设置(设置2)下重新扫描物体的复杂区域,以提高原始重建结果的准确性。最后,组合在每个扫描通过后重建的模型以获得对象的最终重建的3D形状。通过实验室构建的原型实验证明了该方法的可行性。结果表明,扫描仪在大型扫描区域上具有高的重建精度。换句话说,所提出的光学扫描仪对3D工程应用具有显着的潜力。

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