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首页> 外文期刊>IEEE Transactions on Magnetics >A Space Mapping Methodology for Defect Characterization From Magnetic Flux Leakage Measurements
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A Space Mapping Methodology for Defect Characterization From Magnetic Flux Leakage Measurements

机译:从磁通量泄漏测量中表征缺陷的空间映射方法

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摘要

We present an inversion methodology for defect characterization using the data from magnetic flux leakage (MFL) measurements. We use a single tangential component of the leakage field as the MFL response. The inversion procedure employs the space mapping methodology. Space mapping is an efficient technique that shifts the optimization burden from a computationally expensive accurate (fine) model to a less accurate (coarse) but fast model. Here the fine model is a finite-element method (FEM) simulation, while the coarse model is based on analytical formulas. We achieve good estimation of the defect parameters using just a few FEM simulations, which leads to substantial savings in computational cost as compared to other optimization approaches. We examine the efficiency of the proposed inversion technique in estimating the shape parameters of rectangular and cylindrical defects in steel pipes. Our results show good agreement between the actual and estimated defect parameters.
机译:我们使用磁通量泄漏(MFL)测量数据提出了一种用于缺陷表征的反演方法。我们使用泄漏场的一个切向分量作为MFL响应。反演程序采用空间映射方法。空间映射是一种有效的技术,可以将优化负担从计算量大的准确(精细)模型转移到较不准确(粗略)但快速的模型。在这里,精细模型是有限元方法(FEM)模拟,而粗糙模型是基于解析公式的。我们仅使用几个FEM仿真就可以很好地估计缺陷参数,与其他优化方法相比,这可以节省大量的计算成本。我们检查了提出的反演技术在估计钢管中矩形和圆柱形缺陷的形状参数方面的效率。我们的结果表明,实际缺陷参数和估计缺陷参数之间具有良好的一致性。

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