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Flaw Characterization in Ultrasonic Non-destructive Testing Method Using Exponential Modeling

机译:超声非破坏性测试方法探险表征使用指数造型

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摘要

Determining the shape, area, volume, and direction of flaws using ultrasonic imaging of metallic pieces, is a method estimating the severity of their defects. Different methods are used to process ultrasound images. Among these methods are spectral analyses, statistical, mathematical and intelligent methods. Within each of these, there are some advantages as well as limitations. Prony algorithm, which has been used as a parametric method for extracting exponential components of a signal, has several applications in signal modeling, system identification and classification. In this paper, after simulating pieces of oil pipeline, digital Wavelet transform has been used to reduce the noise of simulated images. Then the two dimensional Prony algorithm is applied to the images. After estimating the poles and residue of the signal using the Prony method, some features are extracted from these components in order to detect and classify defects. The method proposed in this paper, unlike conventional methods, will not only locate a flaw position in the image, but it can also be used to simultaneously estimate the depth and area of the defect.
机译:使用金属片的超声成像确定缺陷的形状,面积,体积和方向,是估计其缺陷的严重程度的方法。使用不同的方法来处理超声图像。这些方法中是谱分析,统计,数学和智能方法。在这些中的每一个中,都有一些优点以及限制。已用作用于提取信号指数分量的参数化方法的掌算法在信号建模,系统识别和分类中具有若干应用。在本文中,在模拟油水管道之后,数字小波变换已被用于减少模拟图像的噪声。然后将二维掌算法应用于图像。在使用PRONY方法估计信号的杆和残留物之后,从这些组件中提取了一些特征,以便检测和分类缺陷。本文提出的方法,与传统方法不同,不仅将定位图像中的缺陷位置,而且还可用于同时估计缺陷的深度和面积。

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