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Probability of detection modelling in eddy current NDE of flaws integrating multiple correlated variables

机译:探险探测探测模型的概率探讨了多个相关变量的缺陷

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A new method to model the probability of detection (PoD) of flaws that takes into consideration the correlation between the flaw features as a function of the correlated flaw dimensions, the length and depth, is proposed in this work. Boundary element method was used to efficiently obtain the required flaw features. The features used are the maximum change in the amplitudes of the three components of the scattered magnetic flux density (B_x, B_y and B_x). Firstly, the magnetic-electric Green's function, for a finite thickness plate, is formulated. On knowing the distribution of the dipole density, the scattered fields at the axial center of the coil are computed. Experiments were conducted in a controlled environment to validate the predictions of the BEM. The features, from the BEM, computed for several flaw lengths and depths, were fit to a trivariate Gaussian distribution. The discrete form of the PoD was determined after identifying the sensor threshold. A continuous function is later obtained by linking the discrete PoD with a generalized logistic function.
机译:在这项工作中提出了一种模拟缺陷的检测概率(POD)的概率(POD)的概率,这是在该工作中提出了相关漏洞尺寸的函数,长度和深度的相关性。边界元法用于有效地获得所需的缺陷特征。所用的特征是散射磁通密度(B_X,B_Y和B_X)的三个部件的幅度的最大变化。首先,配制用于有限厚度板的磁性绿色的功能。在知道偶极密度的分布时,计算线圈轴向中心处的散射场。在受控环境中进行实验,以验证BEM的预测。从BEM计算的特征,计算出几个漏洞长度和深度,适合于琐碎的高斯分布。在识别传感器阈值之后确定POD的离散形式。稍后通过将离散荚与广义逻辑函数链接来获得连续功能。

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