高清晰度3D表面扫描仪的验证和验收测试

C. Bathow, B. Breuckmann, Roberto Scopigno
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引用次数: 13

摘要

基于结构光或激光光截面技术的高清晰度三维(3D)表面扫描仪已经找到了广泛的应用,特别是在技术和工业应用中(主要用于测量和检测任务)。大约10年来,适应艺术和文化遗产(CH)要求的系统支持艺术品的3D数字化。虽然数字3D模型在CH中的使用正在迅速增长,但许多用户还不完全熟悉术语和技术规范的所有细节。由于大多数用户是从业人员,因此有时对数据质量、准确性、分辨率、测量不确定度等术语只有很少的经验,特别是因为这些术语在扫描仪制造商的手册和小册子以及科学论文的作者中以非常不同的方式使用。此外,许多应用的目标是数字化而不是测量;因此,许多用户甚至没有意识到,他们仍然需要关心计量问题,如使用设备的验证和验收测试,以获得可靠的扫描结果。在第一部分中,本文将概述数据采集和数据处理的基本原理,并介绍高清3D表面扫描仪的优点和优点,局限性和缺点以及不同性能参数之间的相关性。我们的目标也是纠正一些典型的误解,并澄清有关的术语和定义。在第二部分中,本文将重点介绍高清3D扫描仪的验证和验收测试,回顾德国指南VDI/VDE 2634/2,并提出一些初步的扩展要求,以更好地应对CH域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Verification and Acceptance Tests for High Definition 3D Surface Scanners
High definition three-dimensional (3D) surface scanners, based on structured light or laser light section techniques, have found a wide range of applications, especially for technical and industrial applications (mostly for measuring and inspection tasks). Since about 10 years, systems adapted for the requirements of arts and Cultural Heritage (CH) support 3D digitization of art objects. Although the use of digital 3D models in CH is rapidly growing, many of the users are not yet completely familiar with terminology and all details of technical specifications. As most of the users are practitioners there is sometimes only little experience with terms as data quality, accuracy, resolution, measurement uncertainty, especially because these terms are used in very different ways, in manuals and brochures of scanner manufacturers as well as by authors of scientific papers. Moreover, the objective of many applications is digitization instead of measurement; therefore, many users are not even aware, that they nevertheless have to care about metrology issues such as verification and acceptance tests of the used equipment to get a reliable scanning result. In its first part, the paper will give an overview the fundamentals of data acquisition and data processing, presenting also advantages and benefits, limitations and drawbacks as well as correlations between different performance parameters of high definition 3D surface scanners. Our goal is also to rectify a number of typical misunderstandings and to clarify related terms and definitions. In its second part, the paper will concentrate on verification and acceptance tests of high definition 3D scanners, reviewing the German guidelines VDI/VDE 2634/2 and proposing some preliminary extensions required to cope better with the CH domain.
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