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采用计算机视觉方法对钢铁产品进行自动化表面检测。

Automated surface inspection for steel products using computer vision approach.

作者信息

Xi Jiaqi, Shentu Lifeng, Hu Jikang, Li Mian

出版信息

Appl Opt. 2017 Jan 10;56(2):184-192. doi: 10.1364/AO.56.000184.

Abstract

Surface inspection is a critical step in ensuring the product quality in the steel-making industry. In order to relieve inspectors of laborious work and improve the consistency of inspection, much effort has been dedicated to the automated inspection using computer vision approaches over the past decades. However, due to non-uniform illumination conditions and similarity between the surface textures and defects, the present methods are usually applicable to very specific cases. In this paper a new framework for surface inspection has been proposed to overcome these limitations. By investigating the image formation process, a quantitative model characterizing the impact of illumination on the image quality is developed, based on which the non-uniform brightness in the image can be effectively removed. Then a simple classifier is designed to identify the defects among the surface textures. The significance of this approach lies in its robustness to illumination changes and wide applicability to different inspection scenarios. The proposed approach has been successfully applied to the real-time surface inspection of round billets in real manufacturing. Implemented on a conventional industrial PC, the algorithm can proceed at 12.5 frames per second with the successful detection rate being over 90% for turned and skinned billets.

摘要

表面检测是钢铁行业确保产品质量的关键步骤。在过去几十年里,为了减轻检查员的繁重工作并提高检测的一致性,人们致力于采用计算机视觉方法进行自动检测。然而,由于光照条件不均匀以及表面纹理和缺陷之间的相似性,目前的方法通常只适用于非常特定的情况。本文提出了一种新的表面检测框架以克服这些局限性。通过研究图像形成过程,建立了一个表征光照对图像质量影响的定量模型,基于该模型可以有效去除图像中的亮度不均匀性。然后设计了一个简单的分类器来识别表面纹理中的缺陷。该方法的重要意义在于其对光照变化的鲁棒性以及对不同检测场景的广泛适用性。所提出的方法已成功应用于实际生产中圆坯的实时表面检测。该算法在传统工业PC上实现,每秒可处理12.5帧,对于经过车削和剥皮处理的钢坯,成功检测率超过90%。

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