Department of Industrial Design, Art, Communication and Fashion (INDACO)-Politecnico di Milano, Via Durando 38/A, 20158, Milan, Italy.
Sensors (Basel). 2010;10(8):7192-215. doi: 10.3390/s100807192. Epub 2010 Jul 29.
The performance of 2D digital imaging systems depends on several factors related with both optical and electronic processing. These concepts have originated standards, which have been conceived for photographic equipment and bi-dimensional scanning systems, and which have been aimed at estimating different parameters such as resolution, noise or dynamic range. Conversely, no standard test protocols currently exist for evaluating the corresponding performances of 3D imaging systems such as laser scanners or pattern projection range cameras. This paper is focused on investigating experimental processes for evaluating some critical parameters of 3D equipment, by extending the concepts defined by the ISO standards to the 3D domain. The experimental part of this work concerns the characterization of different range sensors through the extraction of their resolution, accuracy and uncertainty from sets of 3D data acquisitions of specifically designed test objects whose geometrical characteristics are known in advance. The major objective of this contribution is to suggest an easy characterization process for generating a reliable comparison between the performances of different range sensors and to check if a specific piece of equipment is compliant with the expected characteristics.
二维数字成像系统的性能取决于与光学和电子处理相关的几个因素。这些概念源于标准,这些标准最初是为摄影设备和二维扫描系统而制定的,旨在估计分辨率、噪声或动态范围等不同参数。然而,目前还没有用于评估激光扫描仪或图案投影距离相机等三维成像系统相应性能的标准测试协议。本文通过将 ISO 标准中定义的概念扩展到三维领域,重点研究了评估三维设备一些关键参数的实验过程。这项工作的实验部分涉及通过从特定设计的测试对象的三维数据采集集中提取其分辨率、精度和不确定性,来对不同距离传感器进行特征描述,这些测试对象的几何特征事先是已知的。这项工作的主要目标是建议一种简单的特征描述过程,以便能够在不同距离传感器的性能之间进行可靠的比较,并检查特定设备是否符合预期的特性。