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A Modified Landweber Iteration Algorithm using Updated Sensitivity Matrix for Electrical Impedance Tomography

机译:一种使用更新的灵敏度矩阵的改进的Landweber迭代算法,用于电阻抗层析成像

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摘要

Electrical impedance tomography (EIT) is a technique to reconstruct the conductivity distribution of an inho-mogeneous medium by injecting currents at the boundary of an object and measuring the resulting changes in voltage. The sensitivity matrix of EIT is calculated with a selected reference conductivity distribution, which is time-consuming. However, the sensitivity matrix will change with the media distribution, which results in the quality of the reconstructed image reduction. A modified Landweber iterative algorithm based on updated sensitivity matrix was presented in this paper. The reconstructed image based on conventional Landweber iteration was selected as the initial image for sensitivity matrix update, and the reconstructed images after sensitivity matrix update using different initial images were compared. The effect on the quality of reconstructed images for different times of sensitivity matrix update was also analyzed. Simulation and static test were carried out. Experimental results showed that reconstructed images with higher quality can be obtained.
机译:电阻抗断层扫描(EIT)是一种通过在对象的边界处注入电流并测量所得电压变化来重建非均相介质的电导率分布的技术。利用选定的参考电导率分布来计算EIT的灵敏度矩阵,这很费时。但是,灵敏度矩阵将随介质分布而变化,从而导致重建图像质量下降。提出了一种基于更新的灵敏度矩阵的改进的Landweber迭代算法。选择基于常规Landweber迭代的重建图像作为敏感度矩阵更新的初始图像,并比较使用不同初始图像更新敏感度矩阵后的重建图像。还分析了不同时间灵敏度矩阵更新对重构图像质量的影响。进行了仿真和静态测试。实验结果表明,可以获得较高质量的重建图像。

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