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Direct recovery of the electrical admittivities in 2D electrical tomography by using Calderon's method and two-terminal/electrode excitation strategies

机译:通过使用Calderon方法和两端/电极激励策略直接恢复2D断层扫描中的电导率

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摘要

Calderon's method was used to reconstruct electrical admittivity, i.e. conductivity as well as permittivity, for electrical tomography in this paper. It is a direct algorithm of the image reconstruction, as the value of the real and imaginary parts of the admittivity at any position can be obtained independently. A new way to construct the Dirichlet-to-Neumann map from the data collected through two-terminal/electrode excitation strategy was also introduced to calculate the scattering transform. The image reconstruction was implemented through numerical integration. Since the Gauss-Legendre quadrature was applied and can be predetermined, the image reconstruction process was fast and resulted in images of good quality. Both simulated and experimental results validated the feasibility and effectiveness of the proposed method in dual-modality electrical tomography.
机译:本文将Calderon的方法用于重建电层析成像的介电常数,即电导率和介电常数。它是图像重建的直接算法,因为可以独立获得任何位置的介电常数的实部和虚部的值。还介绍了一种新的方法,该方法可通过从两末端/电极激励策略收集的数据构造Dirichlet-Neumann图,以计算散射变换。图像重建是通过数值积分实现的。由于应用了Gauss-Legendre正交并且可以预先确定,因此图像重建过程很快,并且图像质量良好。仿真和实验结果均验证了该方法在双模态电层析成像中的可行性和有效性。

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