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An underwater lighting and turbidity image repository for analysing the performance of image-based non-destructive techniques

机译:水下照明和浊度图像储存库,用于分析基于图像的非破坏性技术的性能

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摘要

Image processing-based methods, capable of detecting and quantifying cracks, surface defects or recovering 3D shape information are increasingly being recognised as a valuable tool for inspecting underwater structures. It is of great practical importance for inspectors to know the effectiveness of such techniques when applied in conditions. This paper considers an underwater environment characterised by poor visibility chiefly governed by the lighting and turbidity levels, along with a range of geometry and damage conditions of calibrated specimens. The paper addresses the relationship between underwater visibility and the performance of image-based methods through the development and calibration of a first open-source underwater lighting and turbidity image repository (ULTIR). ULTIR contains a large collection of images of submerged specimens that have been photographed under controlled lighting and turbidity levels featuring various forms of geometry and damage. ULTIR aims to facilitate inspectors when rationalising the use of image processing methods as part of an underwater inspection campaign and to enable researchers to efficiently evaluate the performance of image-based methods under realistic operating conditions. Stakeholders in underwater infrastructure can benefit through this first large, standardised, well-annotated, and freely available database of images and associated metadata.
机译:基于图像处理的方法,能够检测和量化裂缝,表面缺陷或恢复3D形状信息越来越多地被识别为用于检查水下结构的有价值的工具。在在条件下应用这些技术的有效性,视别人选人员具有很大的实际重要性。本文考虑了水下环境,其可见性差,主要由照明和浊度水平控制,以及校准标本的一系列几何形状和损伤条件。本文通过开发和校准了第一开源水下照明和浊度图像储存库(ULTIR)来解决水下可见性与基于图像的方法的性能之间的关系。 Ultir含有大量的浸没样本图像,这些标本在受控照明和浊度水平下被拍摄,具有各种形式的几何形状和损坏。 Ultir旨在促进在利用图像处理方法的使用作为水下检查活动的一部分时的检查员,并使研究人员能够在现实的操作条件下有效地评估基于图像的方法的性能。水下基础设施的利益相关者可以通过这一大型,标准化,注释的和自由可用的图像和相关元数据数据库受益。

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