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Imaging defects with reduced space inversion of magnetic flux leakage fields

机译:减少磁通量泄漏场空间反转的成像缺陷

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Magnetic flux leakage technique is being used for detection of defects inside a magnetically permeable bar by measuring the leakage fields outside the bar. Defects in magnetically permeable bar have been modeled as localized anti-dipoles whose moments and locations have to be determined. Generalized inverse or pseudo-inverse technique has been used to image the defects using least-square minimum-norm solution. An initial estimate of the defects is obtained by utilizing the generalized inverse of the lead matrix over the entire region of the sample space using the measured magnetic field data including random noise. By defining a suitable threshold, and ignoring the defect locations where the moment inferred in the initial estimate was below the chosen threshold, the image of the defect is again obtained by repeating the calculation in this reduced space for the lead matrix. The leakage fields from both a line defect and a deeply buried defect were simulated and utilized for inversion using this approach. It has been possible to image the defects and quantify the strengths of the moments with the correlation coefficient approaching unity for low-noise case and attain significant improvement in the correlation coefficient for data with reasonable levels of noise.
机译:磁通泄漏技术被用于通过测量导磁条外部的漏磁场来检测导磁条内部的缺陷。导磁棒中的缺陷已建模为局部反偶极子,必须确定其矩和位置。广义逆或伪逆技术已用于使用最小二乘最小范数解对缺陷进行成像。通过使用包括随机噪声的测得磁场数据,利用样品空间整个区域上的铅矩阵的广义逆,可以得到缺陷的初始估计。通过定义合适的阈值,并忽略初始估计中推断的矩低于所选阈值的缺陷位置,可以通过在引线矩阵的此缩小空间中重复计算来再次获得缺陷图像。模拟了线缺陷和深埋缺陷的泄漏场,并使用此方法将其用于反演。对于低噪声情况,有可能对缺陷进行成像并量化矩的强度,并且相关系数接近于1,并且对于噪声水平合理的数据,相关系数可以显着提高。

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