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Segmentation of defects from radiography images by the histogram concavity threshold method

机译:直方图凹度阈值法分割放射线图像中的缺陷

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A histogram concavity-based thresholding approach has been used for segmenting porosities, voids and inclusions from digitised radiography images. Studies on small defects in cylindrical tubes and flat plates show that histogram concavity-based thresholding approach yields better results compared to conventional automatic thresholding techniques like Maximum Entropy and Otsu methods, where heterogeneous background present in the image due to the geometry and large X-ray quantum and structural noise gives poor segmentation. The segmentation procedure is optimised by filtering the abrupt noises with low-pass median filtering, followed by grey-level global thresholding. The histogram concavity-based thresholds provided excellent segmentation of pores and voids present in Electrochemical Hydrogen Sensors (ECHS), cast plates used in refineries, micro-pores in tube-to-tubesheet (TTS) welds of steam generator of fast breeder reactor, tungsten inclusion in Tungsten Inert Gas (TIG) welds, crater crack and external undercut in welds. An accuracy of ±1-2 pixel sizes (65-130 microns) is obtained for the estimation of defects sizes from the grey-level profiling.
机译:基于直方图凹度的阈值化方法已被用于分割数字化射线照相图像中的孔隙,空隙和夹杂物。对圆柱管和平板中的小缺陷的研究表明,与传统的自动阈值处理技术(例如最大熵和Otsu方法)相比,基于直方图凹度的阈值处理方法可获得更好的结果,在传统的自动阈值技术中,由于几何形状和较大的X射线,图像中存在异质背景量子和结构噪声导致分割不佳。通过使用低通中值滤波对突变噪声进行滤波,然后进行灰度全局阈值化,可以优化分割过程。基于直方图基于凹度的阈值可对电化学氢传感器(ECHS),炼油厂中使用的铸板,快速增殖反应堆蒸汽发生器的管对管板(TTS)焊缝中的微孔,钨进行很好的孔隙和空隙分割钨极惰性气体(TIG)焊缝中的夹杂物,焊缝中的火山口裂纹和外部咬边。从灰度轮廓估计缺陷尺寸时,可获得±1-2像素大小(65-130微米)的精度。

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