Direct localization of multiple magnetic dipoles for surface crack detection

被引:6
作者
Nara, T. [1 ]
Ando, S. [1 ]
机构
[1] Department of Information Physics and Computing, Graduate School of Information Science and Technology, University of Tokyo, Bunkyo-ku, Tokyo, 113-8656, 7-3-1, Hongo
来源
Journal of Inverse and Ill-Posed Problems | 2007年 / 15卷 / 04期
关键词
Crack detection; Direct method; Leakage magnetic flux;
D O I
10.1515/JIIP.2007.022
中图分类号
学科分类号
摘要
This paper presents a novel, direct method for detecting surface cracks in a magnetic plate. In the leakage magnetic field method, a crack is modeled as being full of magnetic dipoles aligned along the crack, which is to be reconstructed from measurement of the leaked field. First, we introduce a source model of an equivalent magnetic dipole (EMD) whose location and moment coincide with the centroid of a crack and total moment distributed along the crack, respectively. Then, under the multiple EMDs model, using the multipole expansion of the leakage field, we derive algebraic equations relating the EMD parameters to data. They are formulated as a so-called 'moment problem'so that the centroid positions are reconstructed as generalized eigenvalues of Hankel matrices consisting of the multipole moments. The advantage of our method is that it requires neither initial values of the EMD parameters nor computing forward solution iteratively so that the essential parameters of the cracks are obtained by quite simple, algebraic computation. Numerical simulations show validity of our method under noisy condition. © de Gruyter 2007.
引用
收藏
页码:403 / 418
页数:15
相关论文
共 19 条
[1]  
Alvarez R.E., Filter functions for computing multipole moments from the magnetic field normal to plane, IEEE Transactions on Medical Imaging, 10, 3, pp. 375-381, (1991)
[2]  
Chen Z., Aoto K., Miya K., NDE of fatigue damage in austenite stainless by measuring and inversion of damage-induced magnetic field, Electromagnetic Nondestructive Evaluation, 6, pp. 127-134, (2002)
[3]  
Dobbman G., Holler P., Research Techniques in Nondestructive Testing, (1980)
[4]  
Edwards C., Palmer S.B., MAGNETIC LEAKAGE FIELD OF SURFACE-BREAKING CRACKS, Journal of Physics D: Applied Physics, 19, 4, pp. 657-673, (1986)
[5]  
El-Badia A., Ha-Duong T., An inverse source problem in potential analysis, Inverse Problems, 16, 3, pp. 651-663, (2000)
[6]  
Golub G.H., Milanfar P., Varah J., A stable numerical methods for inverting shape from moments, SIAM J. Scientific Computing, 21, 4, pp. 1222-1243, (2000)
[7]  
He S., Romanov V.G., Identification of dipole sources in a bounded domain for Maxwell's equations, Wave Motion, 28, 1, pp. 25-40, (1998)
[8]  
Hobson E.W., The Theory of Spherical and Ellipsoidal Harmonics, (1931)
[9]  
Jerbi K., Mosher J.C., Baillet S., Leahy R.M., On MEG forward modelling using multipolar expansions, Physics in Medicine and Biology, 47, 4, pp. 523-555, (2002)
[10]  
Jerbi K., Baillet S., Mosher J.C., Nolte G., Garnero L., Leahy R.M., Localization of realistic cortical activity in MEG using current multipoles, NeuroImage, 22, 2, pp. 779-793, (2004)