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A novel visual pipework inspection system

机译:一种新型的视觉管道检查系统

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摘要

The interior visual inspection of pipelines in the nuclear industry is a safety critical activity conducted during outages to ensure the continued safe and reliable operation of plant. Typically, the video output by a manually deployed probe is viewed by an operator looking to identify and localise surface defects such as corrosion, erosion and pitting. However, it is very challenging to estimate the nature and extent of defects by viewing a large structure through a relatively small field of view. This work describes a new visual inspection system employing photogrammetry using a fisheye camera and a structured light system to map the internal geometry of pipelines by generating a photorealistic, geometrically accurate surface model. The error of the system output was evaluated through comparison to a ground truth laser scan (ATOS GOM Triple Scan) of a nuclear grade split pipe sample (stainless steel 304L, 80mm internal diameter) containing defects representative of the application – the error was found to be submillimetre across the sample.
机译:核工业中管道的内部外观检查是在停电期间进行的一项安全关键活动,以确保工厂的持续安全可靠运行。通常,操作员会查看手动部署的探头输出的视频,以寻找并定位诸如腐蚀,腐蚀和点蚀之类的表面缺陷。但是,通过从相对较小的视野观察大型结构来估计缺陷的性质和程度非常具有挑战性。这项工作描述了一种新的视觉检查系统,该系统使用了使用鱼眼镜头的摄影测量法和结构化的灯光系统,以通过生成逼真的几何精确表面模型来绘制管道的内部几何图形。通过与包含代表应用缺陷的核级分流管样品(不锈钢304L,内径80mm)的地面真相激光扫描(ATOS GOM三重扫描)进行比较,评估了系统输出的误差-发现该误差在整个样本中小于毫米。

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