一种基于自适应canny算法和迭代分割阈值的边缘检测方法

Song Qiang, Lin Guoying, Ma Jing-qi, Z. Hongmei
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引用次数: 23

摘要

在裂纹检测技术中,传统的Canny算法采用固定的高斯滤波器空间尺度系数和高低阈值的经验值,无法根据实际图像校正参数,存在自适应性不足的问题。提出了一种基于自适应Canny算法和迭代阈值分割算法的表面裂纹检测方法。首先,在图像平滑过程中,自适应Canny算法自动计算当前像素的灰度值与滤波窗口内图像平均灰度值的差值,并将差值作为当前像素高斯滤波的空间尺度系数;其次,利用Otsu方法计算图像梯度直方图,得到高、低阈值,并利用这些新值检测裂纹边缘;最后,基于迭代阈值分割算法,对裂纹图像进行二值化处理,通过形态扩张消除裂纹中的断点和裂纹内的空洞。实验结果表明,新的裂纹检测方法能很好地保留裂纹边缘,并取得较好的消噪效果。它还可以减少误检和漏检。在裂纹检测上取得了较好的效果。
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An edge-detection method based on adaptive canny algorithm and iterative segmentation threshold
In the technology of crack detection, the traditional Canny algorithm uses fixed spatial scale coefficient of Gauss filter and empirical values of the high and low thresholds, and it has defective in self-adaptability because it is unable to correct parameters according to the actual image. This paper proposes a method based on adaptive Canny algorithm and iterative threshold segmentation algorithm to detect surface crack. Firstly, in the process of image smoothing, the adaptive Canny algorithm automatically calculates difference between the gray value of present pixel and the average gray value of image in the filter window, and the difference is set as the spatial scale coefficient for Gauss filter of the current pixel. Secondly, the Otsu method is applied to calculate image gradient histogram so as to get high and low thresholds and those new values are applied to detect the edge of the crack. Finally, based on the iterative threshold segmentation algorithm, the image with crack is binarized, and the breakpoints in the crack and the cavities inside the crack are eliminated by morphological dilation. Experimental results show that the new crack detection method can well retain crack edge and get better effect on noise cancellation. It can also reduce the false and missed detections. Better results can be achieved on crack detection.
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