Jeon Yong-Ju, Choi Doo-Chul, Lee Sang Jun, Yun Jong Pil, Kim Sang Woo
Appl Opt. 2016 Jan 1;55(1):47-57. doi: 10.1364/AO.55.000047.
In this paper a novel filtering scheme combined with a lighting method is proposed for defect detection in steel surfaces. A steel surface has non-uniform brightness and various shaped defects, which cause difficulties in defect detection. To solve this problem we propose a sub-optimal filtering that is combined with a switching-lighting method. First, dual-light switching lighting (DLSL) is explained, which decreases the effect of non-uniformity of surface brightness and improves the detection accuracy. By using the DLSL method, defects are represented as alternated black and white patterns regardless of the size, shape, or orientation of defects. Therefore, defects can be detected by finding alternated black and white patterns. Second, we propose a scheme for detecting defects in steel-surface images acquired using the DLSL method. The presence of scales strongly affects the optical properties of the surface. Moreover, the textures of steel-plate images vary greatly because of the temperature and grade of steel. Therefore, conventional filter-design methods are not effective for different image textures. A sub-optimal scheme based on an optimized general-finite impulse-response filter is also proposed. Finally, experimental results conducted on steel-surface images from an actual steel-production line show the effectiveness of the proposed algorithm.
本文提出了一种结合光照方法的新型滤波方案,用于钢表面缺陷检测。钢表面亮度不均匀且存在各种形状的缺陷,这给缺陷检测带来了困难。为解决这一问题,我们提出了一种与切换光照方法相结合的次优滤波方法。首先,解释了双光切换照明(DLSL),它降低了表面亮度不均匀的影响,提高了检测精度。通过使用DLSL方法,无论缺陷的大小、形状或方向如何,缺陷都表现为黑白交替的图案。因此,可以通过查找黑白交替的图案来检测缺陷。其次,我们提出了一种用于检测使用DLSL方法获取的钢表面图像中缺陷的方案。氧化皮的存在强烈影响表面的光学特性。此外,钢板图像的纹理因钢的温度和等级而有很大差异。因此,传统的滤波器设计方法对不同的图像纹理无效。还提出了一种基于优化的通用有限脉冲响应滤波器的次优方案。最后,对实际钢铁生产线的钢表面图像进行的实验结果表明了所提算法的有效性。