基于计算机视觉的管道检测系统的开发

Hyoung-Seok Kim, B. Lee, Rak-Jin Kim
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引用次数: 2

摘要

近年来,作为工厂自动化设备的一部分,对基于计算机视觉的检测和/或测量系统的需求越来越大。一般来说,由于时间的限制,几乎不可能检查所有零件的故障,来自零件上料系统,只有人工检查。因此,人工检测大多是针对特定的样品,而不是所有的来件,人工检测既不能保证一致的测量精度,也不能减少工作时间。因此,为了提高检测的测量速度和精度,迫切需要一种计算机辅助测量和分析方法。本文提出了一种基于计算机视觉的管道检测系统,该系统利用计算机视觉获取来自成形线的三种不同类型管道的正面和侧面轮廓。采用拉普拉斯算子进行边缘检测。为了减少视觉处理时间,将改进的霍夫变换与聚类方法结合起来进行直线检测。通过求出内、外圆的中心点和直径来确定零件的偏心。此外,还建立了检测系统,将故障部件的数据和图像以文件的形式存储并传输到服务器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Computer-vision-based Pipe Inspection System
Recently, there has been an increasing demand for computer-vision-based inspection and/or measurement system as a part of factory automation equipment. In general, it is almost impossible to check the fault of all parts, coming from part-feeding system, with only manual inspection because of time limitation. Therefore, most of manual inspection is applied to specific samples, not all coming parts, and manual inspection neither guarantee consistent measuring accuracy nor decrease working time. Thus, in order to improve the measuring speed and accuracy of the inspection, a computer-aided measuring and analysis method is highly needed. In this paper, a computer-vision-based pipe inspection system is proposed, where the front and side-view profiles of three different kinds of pipes, coming from a forming line, are acquired by computer vision. And the edge detection is processed by using Laplace operator. To reduce the vision processing time, modified Hough transform is used with clustering method for straight line detection. And the center points and diameters of inner and outer circle are found to determine eccentricity of the parts. Also, an inspection system has been built so that the data and images of faulted parts are stored as files and transferred to the server.
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