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Spatial resolution analysis for real time applications in electrical capacitance tomography

机译:电容层析成像实时应用的空间分辨率分析

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摘要

Electrical capacitance tomography (ECT) has proven to be a suitable tool for monitoring tasks in various multiphase flows. Due to the nonlinearity of the forward model, accurate reconstruction results are mostly obtained by nonlinear/iterative methods like Gaulβ-Newton. The reconstruction time of this method grows rapidly with the number of degrees of freedom (DoF) of the problem. Due to the no uniform sensitivity, the achievable spatial resolution is not uniformly distributed. In this work we fit the size of the reconstruction elements to the achievable resolution in the respective area. The idea is to use a coarser model (i.e. a dilated grid) in regions where only a low resolution can be achieved. This is in order to decrease the number of DoF without having an impact on the reconstruction quality. As a measure of the spatial resolution of our ECT-system the point spread function (PSF) is used, which is determined by simulations. We use this information for reconstruction tasks with different meshes to demonstrate that almost equal results can be achieved at a fraction of time. Additionally, we investigate the characteristics of coarser models within the L-curve framework, which is used for the determination of the regularization parameter.
机译:电容层析成像(ECT)已被证明是监视各种多相流中的任务的合适工具。由于前向模型的非线性,因此大多数重建方法的结果通常是通过非线性/迭代方法(如Gaulβ-Newton)获得的。这种方法的重建时间随着问题的自由度(DoF)的增加而迅速增长。由于没有统一的灵敏度,因此可获得的空间分辨率不是均匀分布的。在这项工作中,我们使重建元素的大小适合各个区域中可实现的分辨率。这个想法是在只能实现低分辨率的区域中使用较粗糙的模型(即膨胀的网格)。这是为了在不影响重建质量的情况下减少DoF的数量。作为我们ECT系统的空间分辨率的度量,使用了点扩散函数(PSF),该函数由模拟确定。我们将此信息用于具有不同网格的重建任务,以证明可以在很短的时间内获得几乎相等的结果。此外,我们研究了L曲线框架内较粗糙模型的特征,该特征用于确定正则化参数。

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  • 来源
    《Nuclear Engineering and Design》 |2011年第6期|p.1988-1993|共6页
  • 作者单位

    Institute of Electrical Measurement and Measurement Signal Processing, Craz University of Technology, Kopernikusgasse 24/4, A-8010 Craz, Austria;

    Institute of Electrical Measurement and Measurement Signal Processing, Craz University of Technology, Kopernikusgasse 24/4, A-8010 Craz, Austria;

    Institute of Electrical Measurement and Measurement Signal Processing, Craz University of Technology, Kopernikusgasse 24/4, A-8010 Craz, Austria;

    Institute of Electrical Measurement and Measurement Signal Processing, Craz University of Technology, Kopernikusgasse 24/4, A-8010 Craz, Austria;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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