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A nonlinear approach to difference imaging in EIT; assessment of the robustness in the presence of modelling errors

机译:EIT中差异成像的非线性方法;存在建模错误时的鲁棒性评估

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摘要

Electrical impedance tomography (EIT) is highly sensitive to modelling errors that arise from model reductions and inaccurate knowledge of auxiliary model parameters such as electrode positions, contact impedances and boundary shape of the body. In difference imaging, where the objective is to reconstruct change in the conductivity between EIT measurements at two time instants, the traditional way to circumvent modelling errors is to reconstruct the conductivity change using difference of the measurements and a global linearization of the nonlinear forward problem. Recently, a nonlinear reconstruction approach for difference imaging was proposed (Liu et al 2015 Inverse Probl. Imaging 9, in press). The key feature of the approach is to parameterize the conductivity after the change as a linear combination of the initial conductivity and the conductivity change, and then estimate the initial conductivity and conductivity change by minimizing regularized least squares formulation based on both data sets. This approach allows independently modelling the spatial characteristics of the initial conductivity and the conductivity change by applying separate regularization functionals. In this paper, we investigate how well the nonlinear approach tolerates modelling errors and compare the reconstructions to the results with traditional linearized reconstruction method. The robustness is studied in cases of modelling errors arising from domain truncation, unknown contact impedances, inaccurately known electrode locations and inaccurately known domain boundary using simulated and experimental EIT data.
机译:电阻抗断层扫描(EIT)对因模型缩减和对辅助模型参数(例如电极位置,接触阻抗和身体边界形状)的不正确了解而引起的建模错误高度敏感。在差分成像中,目标是在两个时间点重建EIT测量之间的电导率变化,而规避建模误差的传统方法是使用测量值的差异和非线性正向问题的全局线性化来重建电导率变化。最近,提出了一种用于差异成像的非线性重建方法(Liu等人,2015 Inverse Probl。Imaging,9,付印中)。该方法的关键特征是将变化后的电导率参数化为初始电导率和电导率变化的线性组合,然后通过基于这两个数据集最小化正则化最小二乘公式来估算初始电导率和电导率变化。该方法允许通过应用单独的正则化函数来对初始电导率和电导率变化的空间特征进行独立建模。在本文中,我们研究了非线性方法对建模误差的容忍度,并将重建结果与传统线性化重建方法进行了比较。使用模拟和实验EIT数据,在因区域截断,未知的接触阻抗,不正确的已知电极位置和不准确的域边界而引起的建模错误的情况下,研究了鲁棒性。

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