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Feature-Driven Viewpoint Placement for Model-Based Surface Inspection

机译:基于模型的表面检查的功能驱动视点放置

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摘要

The goal of visual surface inspection is to analyze an object's surface and detect defects by looking at it from different angles. Developments over the past years have made it possible to partially automate this process. Inspection systems use robots to move cameras and obtain pictures that are evaluated by image processing algorithms. Setting up these systems or adapting them to new models is primarily done manually. A key challenge is to define camera viewpoints from which the images are taken. The number of viewpoints should be as low as possible while still guaranteeing an inspection of the desired quality. System engineers define and evaluate configurations that are improved based on a time-consuming trial-and-error process leading to a sufficient, but not necessarily optimal, configuration. With the availability of 3D surface models defined by triangular meshes, this step can be done virtually. This paper presents a new scalable approach to determine a small number of well-placed camera viewpoints for optical surface inspection planning. The initial model is approximated by B-spline surfaces. A set of geometric feature functionals is defined and used for an adaptive, non-uniform surface sampling that is sparse in geometrically low-complexity areas and dense in regions of higher complexity. The presented approach is applicable to solid objects with a given 3D surface model. It makes camera viewpoint generation independent of the resolution of the triangle mesh, and it improves previous results considering number of viewpoints and their relevance.
机译:视觉表面检查的目标是分析物体的表面,并通过从不同的角度查看它来检测缺陷。过去几年的发展使得可以部分自动化此过程。检查系统使用机器人移动摄像机并获得通过图像处理算法评估的图片。设置这些系统或将它们适应新模型主要是手动完成的。关键挑战是定义从中拍摄图像的相机视点。观点次数应尽可能低,同时仍然保证检查所需质量。系统工程师定义和评估基于耗时的试验和错误过程的改进的配置,导致足够,但不一定是最佳的配置。随着三角网格定义的3D表面型号的可用性,可以几乎可以完成此步骤。本文介绍了一种新的可扩展方法,用于确定光学表面检查计划的少量放置的相机视点。初始模型由B样条表面近似。定义了一组几何特征功能,用于自适应,非均匀表面采样,其在几何低复杂性区域中稀疏,并且在复杂性更高的区域中密集。所提出的方法适用于具有给定3D表面模型的固体对象。它使相机视点一致由三角形网格的分辨率无关,并且它提高了考虑观点次数及其相关性的先前结果。

著录项

  • 来源
    《Machine Vision and Applications》 |2021年第1期|8.1-8.21|共21页
  • 作者单位

    Computer Graphics and HCI Group University of Kaiserslautern 67663 Kaiserslautern Germany Image Processing Department Fraunhofer ITWM 67663 Kaiserslautern Germany;

    Computer Graphics and HCI Group University of Kaiserslautern 67663 Kaiserslautern Germany Image Processing Department Fraunhofer ITWM 67663 Kaiserslautern Germany;

    Image Processing Department Fraunhofer ITWM 67663 Kaiserslautern Germany;

    Department of Computer Science University of California Davis CA 95616 USA;

    Computer Graphics and HCI Group University of Kaiserslautern 67663 Kaiserslautern Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    View planning; Object space exploration; Inspection automation; B-spline surface; Model-based planning;

    机译:查看规划;对象空间探索;检查自动化;B样条表面;基于模型的规划;

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