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Integration of multiple response signals into the probability of detection modelling in eddy current NDE of flaws

机译:多响应信号集成到缺陷涡流NDE中检测建模概率

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摘要

A new method of modelling the probability of detection (PoD) of a flaw parameter (flaw length) for the case of multiple correlated flaw response signals is proposed in this work. The PoD modelling is assisted by boundary element method in order to compute the required flaw features, the maximum change in the impedance of a coil, at two different frequencies. Experiments were performed using a LCR meter to verify the predictions of the boundary element model. The modelling was performed on a finite thickness aluminum-1050 plate with a narrow opening surface flaw. The features were computed for various flaw lengths and fit with a bi-variate Gaussian distribution, thus evading the problem of heteroscedasticity. On knowing the signal thresholds, the PoD of a flaw length can be computed from the Gaussian density. The obtained discrete PoD is then regressed by a generalized logistic function (GLF) in order to attain a continuous function for the PoD of the flaw length. The parameters of the GLF are estimated via non-linear least squares minimization by Levenberg-Marquardt algorithm.
机译:在这项工作中提出了一种建模漏洞参数(漏洞长度)的检测概率(POD)的新方法。通过边界元方法辅助POD建模,以计算所需的漏洞特征,在两个不同的频率下线圈的阻抗的最大变化。使用LCR仪表进行实验以验证边界元模型的预测。在具有窄开口表面缺陷的有限厚度铝-1050板上进行建模。计算各种缺陷长度的特征,并配合双变老高斯分布,从而疏起异源性的问题。在知道信号阈值时,可以从高斯密度计算漏洞长度的豆荚。然后通过广义逻辑函数(GLF)来回归所获得的离散荚,以便达到缺陷长度的豆荚的连续功能。通过Levenberg-Marquardt算法通过非线性最小二乘估计GLF的参数。

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