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Imaging metallic samples using electrical capacitance tomography: forward modelling and reconstruction algorithms

机译:使用电容层析成像对金属样品成像:正向建模和重建算法

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摘要

Electrical capacitance tomography (ECT) is an imaging technology used to reconstruct the permittivity distribution within the sensing region. So far, ECT has been primarily used to image non-conductive media only, since if the conductivity of the imaged object is high, the capacitance measuring circuit will be almost shortened by the conductivity path and a clear image cannot be produced using the standard image reconstruction approaches. This paper tackles the problem of imaging metallic samples using conventional ECT systems by investigating the two main aspects of image reconstruction algorithms, namely the forward problem and the inverse problem. For the forward problem, two different methods to model the region of high conductivity in ECT is presented. On the other hand, for the inverse problem, three different algorithms to reconstruct the high contrast images are examined. The first two methods are the linear single step Tikhonov method and the iterative total variation regularization method, and use two sets of ECT data to reconstruct the image in time difference mode. The third method, namely the level set method, uses absolute ECT measurements and was developed using a metallic forward model. The results indicate that the applications of conventional ECT systems can be extended to metal samples using the suggested algorithms and forward model, especially using a level set algorithm to find the boundary of the metal.
机译:电容层析成像(ECT)是一种成像技术,用于重建传感区域内的介电常数分布。到目前为止,ECT主要仅用于非导电介质的成像,因为如果成像对象的电导率很高,电容测量电路将几乎被电导路径缩短,并且无法使用标准图像生成清晰的图像重建方法。本文通过研究图像重建算法的两个主要方面,即正向问题和逆向问题,解决了使用常规ECT系统对金属样品成像的问题。对于前向问题,提出了两种不同的方法来模拟ECT中高电导率区域。另一方面,对于反问题,研究了三种不同的重建高对比度图像的算法。前两种方法是线性单步Tikhonov方法和迭代总变化正则化方法,并使用两组ECT数据以时差模式重建图像。第三种方法,即水平设置方法,使用绝对ECT测量,并使用金属正向模型开发。结果表明,使用建议的算法和正向模型,尤其是使用水平集算法来查找金属的边界,可以将常规ECT系统的应用扩展到金属样品。

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