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首页> 外文期刊>Optics and Lasers in Engineering >A pseudo-3D ball lattice artifact and method for evaluating the metrological performance of structured-light 3D scanners
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A pseudo-3D ball lattice artifact and method for evaluating the metrological performance of structured-light 3D scanners

机译:一种伪3D球晶格伪影和用于评估结构光3D扫描仪的计量性能的方法

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摘要

This paper presents a novel reference artifact and procedure for assessing the metrological performance of structured-light 3D scanners, also known as fringe projection systems. Despite the increasing popularity of these scanners, there is still no international standard aiming at providing a guideline for how to evaluate their metrological performance. The users of the scanners, especially for part inspection, need instructions for comparing the accuracy of different systems in measuring specific parameters, as well as acceptance tests to verify whether a particular scanner can be used to inspect the part in question. As the structured-light scanners are area-scanning systems, they necessitate testing over their entire measurement volume. In order to enable this, we propose a method based on a pseudo-3D artifact calibrated by a contact probe on a coordinate measuring machine (CMM). The proposed artifact consists of a 2D ball plate that is mounted on top of spacers of different heights using kinematic couplings that ensure repeatable positioning of the ball plate with respect to the base in order to create a 3D lattice once measured. The artifact provides reference values for the distance between the centers of any pair of precision balls, as well as the reference for size and form, in order to benchmark the scanner measurements. Using the reference data, the proposed procedure enables acceptance tests and a comprehensive insight into the errors of the scanner in measuring distance, size, and form at different positions within its entire scanning volume.
机译:本文提出了一种新颖的参考工件和用于评估结构光3D扫描仪的计量性能的过程,也称为边缘投影系统。尽管这些扫描仪的普及日益越来越大,但仍然没有国际标准,旨在为如何评估其计量性能提供指导方针。扫描仪的用户,特别是对于部分检查,需要比较不同系统的准确性来测量特定参数的准确性,以及验证特定扫描仪是否可用于检查所讨论的部分。由于结构化光扫描仪是区域扫描系统,因此它们需要在整个测量体积上测试。为了使能实现这一点,我们提出了一种基于坐标测量机(CMM)上的接触探针校准的伪3D伪像的方法。所提出的工件由2D球板组成,该2D球板使用使用运动耦合安装在不同高度的间隔物上,以确保球板相对于基座的可重复定位,以便始于测量3D格子。工件为任何一对精密球的中心之间的距离提供参考值,以及尺寸和形式的参考,以便基准扫描仪测量。使用参考数据,所提出的程序使得接受测试和全面了解扫描仪在测量距离,大小和在其整个扫描体内的不同位置的误差。

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