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Photogrammetry Applied to Small and Micro Scaled Objects: A Review

机译:摄影测量适用于小型和微缩放对象:审查

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Digital close range photogrammetry as 3D optical measurement system has achieving a great success due to the several advantages which meet the ever more complex market requests for free-form components. The capability of the sensor to be moved automatically around the scene, varying the distance from the object and the magnification ratio in a single scanning session allows to reconstruct the 3D model of the sample even in presence of undercuts or complex geometries. The latter are typical of most industrial sectors, e.g. automotive and aerospace, biomedical sector, nature science, e.g. entomology, as well as cultural heritage and archeologic field. Photogrammetry based scanners can be designed in a simple, robust and very cheap way, obtaining results similar to more complex and expensive scanners based on other technologies. In the last years, several steps have been carried out to consolidate and metrologically characterize this methodology with the final aim of making it comparable with other ones already accepted. Although, there are some relevant questions which still represent criticalities for this technique. This paper would provide a review of the main improvements obtained in testing photogrammetry applied to very small object with sub-millimetric features. Firstly, the improvements of using completely automated and controlled scanners were analysed in terms of time saving and precision of the instrument, then, the photogrammetric process has been decomposed in its main phases to allow the emergence of the respective critical issues, and, finally, all the methodological approaches for performance verification have been reported using the existing standards.
机译:Digital Close Range摄影测量如3D光学测量系统,由于符合更复杂的自由形式组件的复杂市场请求的几个优点,实现了巨大的成功。传感器的能力在场景周围自动移动,改变与物体的距离和单个扫描会话中的放大率允许即使在底切或复杂的几何形状存在下也可以重建样品的3D模型。后者是大多数工业部门的典型,例如,汽车和航空航天,生物医学部门,自然科学,例如昆虫学,以及文化遗产和考古领域。基于摄影测量的扫描仪可以以简单,坚固且非常便宜的方式设计,获得类似于其他技术的复杂和昂贵的扫描仪的结果。在过去几年中,已经进行了几个步骤,以巩固和造成这种方法,以最终的目的是使其与已经接受的其他人相当。虽然,存在一些有关的问题,但仍然代表了这种技术的关键性。本文将提供对测试摄影测量中获得的主要改进的审查,其应用于具有亚毫米特征的非常小的物体。首先,在仪器的节省时间和精确度下分析了使用完全自动化和受控扫描仪的改进,然后,摄影测量过程已经在其主要阶段分解,以允许各自的关键问题的出现,最后,通过现有标准报告了绩效验证的所有方法论方法。

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