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Electrical Resistance Tomography for Visualization of Moving Objects Using a Spatiotemporal Total Variation Regularization Algorithm

机译:使用时空总变化正则化算法可视化电阻层析成像的运动对象

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摘要

Electrical resistance tomography (ERT) has been considered as a data collection and image reconstruction method in many multi-phase flow application areas due to its advantages of high speed, low cost and being non-invasive. In order to improve the quality of the reconstructed images, the Total Variation algorithm attracts abundant attention due to its ability to solve large piecewise and discontinuous conductivity distributions. In industrial processing tomography (IPT), techniques such as ERT have been used to extract important flow measurement information. For a moving object inside a pipe, a velocity profile can be calculated from the cross correlation between signals generated from ERT sensors. Many previous studies have used two sets of 2D ERT measurements based on pixel-pixel cross correlation, which requires two ERT systems. In this paper, a method for carrying out flow velocity measurement using a single ERT system is proposed. A novel spatiotemporal total variation regularization approach is utilised to exploit sparsity both in space and time in 4D, and a voxel-voxel cross correlation method is adopted for measurement of flow profile. Result shows that the velocity profile can be calculated with a single ERT system and that the volume fraction and movement can be monitored using the proposed method. Both semi-dynamic experimental and static simulation studies verify the suitability of the proposed method. For in plane velocity profile, a 3D image based on temporal 2D images produces velocity profile with accuracy of less than 1% error and a 4D image for 3D velocity profiling shows an error of 4%.
机译:电阻层析成像(ERT)由于其高速,低成本和无创的优势,已被认为是许多多相流应用领域中的一种数据收集和图像重建方法。为了提高重建图像的质量,Total Variation算法由于能够解决较大的分段和不连续电导率分布而备受关注。在工业处理层析成像(IPT)中,诸如ERT之类的技术已被用于提取重要的流量测量信息。对于管道内的移动物体,可以根据ERT传感器生成的信号之间的互相关来计算速度分布。先前的许多研究已经使用了基于像素-像素互相关的两组2D ERT测量,这需要两个ERT系统。在本文中,提出了一种使用单个ERT系统进行流速测量的方法。利用一种新颖的时空总变化正则化方法来研究4D空间和时间上的稀疏性,并采用体素-体素互相关法测量流量。结果表明,可以使用单个ERT系统来计算速度分布,并且可以使用所提出的方法来监视体积分数和运动。半动态实验和静态仿真研究均证明了该方法的适用性。对于平面速度剖面,基于时间2D图像的3D图像产生的速度剖面的精度小于1%误差,而用于3D速度轮廓分析的4D图像则显示4%的误差。

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