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Reconstructing Images Based on the CG Method with Krylov Subspace for ECT

机译:基于CG方法重建图像对克里夫洛夫子空间的ECT

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摘要

Electrical capacitance tomography (ECT) is considered to be one of the most promising process tomography techniques. The image reconstruction for ECT is an inverse problem to find the permittivity distribution of an object by measuring the electrical capacitances between sets of electrodes placed around its periphery. The conjugate gradient (CG) method is one of the most popular methods applied for image reconstruction, although its convergence rate is low. In this paper, an advanced version of the CG method, i.e. the projected CG method, is proposed to solve the inverse problem for ECT. The solution space is projected onto the Krylov subspace and the ill-posed problem is solved by the CG method in a low-dimensional specific subspace. Simulated results using the projected CG method are presented and compared with the conventional CG method, indicating that the proposed method can reduce the computation time, and improve the resolution of reconstructed images.
机译:电容断层扫描(ECT)被认为是最有前途的过程断层扫描技术之一。 ECT的图像重建是通过测量放置在其周边围绕其周边的电极组之间的电容来找到物体的允许性分布的逆问题。缀合梯度(CG)方法是应用于图像重建的最常用的方法之一,尽管其收敛速率低。在本文中,提出了一种高级版本的CG方法,即投影的CG方法,以解决ECT的反问题。将解决方案空间投射到Krylov子空间上,并且通过在低维特定子空间中的CG方法解决了不良问题。呈现并与传统的CG方法呈现和比较了使用投影CG方法的模拟结果,表明所提出的方法可以减少计算时间,并提高重建图像的分辨率。

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