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首页> 外文期刊>Sensors Journal, IEEE >Acceleration of Electrical Capacitance Volume Tomography Imaging by Fourier-Based Sparse Representations
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Acceleration of Electrical Capacitance Volume Tomography Imaging by Fourier-Based Sparse Representations

机译:通过基于傅立叶的稀疏表示加速电容体积层析成像

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Electrical capacitance tomography (ECT) is a non-invasive and non-intrusive imaging modality that utilizes mutual capacitance measurements between electrode plates to reconstruct the cross-sectional spatial electrical permittivity distribution inside a region of interest (RoI). Increasing attention has been given in recent years to the extension of ECT to volumetric imaging, also known as electrical capacitance volume tomography (ECVT). Most of the desirable properties of ECT carry over to ECVT. However, the speed of reconstruction is reduced in ECVT due to an increase in the number of measurements and in the number of voxels used to represent the permittivity distribution in the RoI. In this paper, we adopt a Fourier basis representation as a means to accelerate the speed of image reconstruction in ECVT. By considering only spatial frequency components below certain threshold, we show that the number of unknowns can be greatly reduced and the overall reconstruction process significantly accelerated. We present both numerical and experimental results to corroborate our findings.
机译:电容层析成像(ECT)是一种非侵入性和非侵入式成像方式,利用电极板之间的互电容测量来重建感兴趣区域(RoI)内的横截面空间电容率分布。近年来,人们越来越重视将ECT扩展到体积成像(也称为电容体积层析成像(ECVT))。 ECT的大多数理想特性都会延续到ECVT。但是,由于增加了测量数量和用于表示RoI中介电常数分布的体素数量,ECVT中的重建速度降低了。在本文中,我们采用傅立叶基础表示法来加快ECVT中图像重建的速度。通过仅考虑低于特定阈值的空间频率分量,我们表明可以大大减少未知数,并且可以显着加速整个重建过程。我们同时提供数值和实验结果以证实我们的发现。

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