An approximation method for solving the inverse MTS problem with the use of neural networks

被引:0
作者
M. I. Shimelevich
E. A. Obornev
机构
[1] Moscow State Geological Prospecting University,
来源
Izvestiya, Physics of the Solid Earth | 2009年 / 45卷
关键词
Inverse problem; neural network inversion; magnetotelluric data; universal approximator; neural network classifier; data classification; classes of parametrized geoelectric structures; neural network palette; neural network monitoring of geoelectric structure parameters;
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摘要
The work develops the approximation approach to solving the inverse MTS problem with the use of neural networks. The inverse problem is considered in model classes of parametrized geoelectric structures, whose electric conductivity is controlled by a few hundreds of macroparameters (N ∼ 300). An approximate inverse operator of the problem is constructed for each model class as a neural network, whose coefficients are determined in the process of training on a representative sample of standard examples of forward problem solutions. The problem of determination of the model class of geolectric structures corresponding to the presented input MT data is solved with the use of the neural network classifier constructed for the available set of model classes of structures. Regularizing factors and errors of the neural network method are analyzed. The operation of the algorithm is illustrated by examples of the 2-D inversion of synthetic MT data.
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页码:1055 / 1071
页数:16
相关论文
共 5 条
[1]  
Cybenko G.(1989)Approximation by Superposition of a Sigmoidal Function Mathematics of Control, Signals, and Systems 2 303-314
[2]  
Raiche A. A.(1991)A Pattern Recognition Approach to Geophysical Inversion Using Neural Networks Geophysics J. Int. 105 629-648
[3]  
Shimelevich M. I.(2007)Rapid Neuronet Inversion of 2D Magnetotelluric Data for Monitoring of Geoelectric Structure Parameters Annals of Geophysics 50 105-109
[4]  
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