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An Effective Measured Data Preprocessing Method in Electrical Impedance Tomography

机译:电阻抗断层扫描中有效测量的数据预处理方法

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As an advanced process detection technology, electrical impedance tomography (EIT) has widely been paid attention to and studied in the industrial fields. But the EIT techniques are greatly limited to the low spatial resolutions. This problem may result from the incorrect preprocessing of measuring data and lack of general criterion to evaluate different preprocessing processes. In this paper, an EIT data preprocessing method is proposed by all rooting measured data and evaluated by two constructed indexes based on all rooted EIT measured data. By finding the optimums of the two indexes, the proposed method can be applied to improve the EIT imaging spatial resolutions. In terms of a theoretical model, the optimal rooting times of the two indexes range in [0.23, 0.33] and in [0.22, 0.35], respectively. Moreover, these factors that affect the correctness of the proposed method are generally analyzed. The measuring data preprocessing is necessary and helpful for any imaging process. Thus, the proposed method can be generally and widely used in any imaging process. Experimental results validate the two proposed indexes.
机译:作为先进的过程检测技术,电阻断层扫描(EIT)已广泛关注并在工业领域进行了研究。但EIT技术极大地限于低空间分辨率。由于测量数据的错误预处理和缺少一般标准来评估不同预处理过程的错误预处理可能导致该问题。在本文中,通过根目录数据提出了一种EIT数据预处理方法,并通过基于所有rooted EIT测量数据的两个构造的索引评估。通过找到两个索引的最佳值,可以应用所提出的方法来改善EIT成像空间分辨率。就理论模型而言,分别在[0.23,0.33]和[0.22,0.35]中的两个指标的最佳生根次数。此外,通常分析了影响所提出的方法的正确性的这些因素。测量数据预处理是必要的,并且有助于任何成像过程。因此,所提出的方法通常可以在任何成像过程中广泛使用。实验结果验证了两种拟议的指标。

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