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首页> 外文期刊>Journal of intelligent material systems and structures >Enhanced imaging of piezoresistive nanocomposites through the incorporation of nonlocal conductivity changes in electrical impedance tomography
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Enhanced imaging of piezoresistive nanocomposites through the incorporation of nonlocal conductivity changes in electrical impedance tomography

机译:通过在电阻抗层析成像中结合非局部电导率变化来增强压阻纳米复合材料的成像

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摘要

Electrical impedance tomography is a method of noninvasively imaging the internal conductivity distribution of a domain. Because many materials exhibit piezoresistivity, electrical impedance tomography has considerable potential for application in structural health monitoring. Despite its numerous benefits such as being low cost, providing continuous sensing, and having the ability to be employed in real time, electrical impedance tomography is limited by several important factors such as the ill-posed nature of the inverse problem and the requirement for large electrode arrays to produce quality images. Unfortunately, current methods of mitigating these limitations impose upon the benefits of electrical impedance tomography. Herein, we propose a multi-physics approach of enhancing electrical impedance tomography without sacrificing any of its benefits. This approach is predicated on coupling global conductivity changes with the electrical impedance tomography inversion process thereby adding additional constraints and rendering the problem less ill-posed. Additionally, we leverage physically motivated global conductivity changes in the context of piezoresistive nanocomposites. We demonstrate this proof of concept with numerical simulations and demonstrate that by incorporating multiple conductivity changes, the rank of the sensitivity matrix can be improved and the quality of electrical impedance tomography reconstructions can be enhanced. The proposed method, therefore, has the potential of easing the implementation burden of electrical impedance tomography while concurrently enabling high-quality images to be produced without imposing on the major advantages of electrical impedance tomography.
机译:电阻抗断层扫描是一种无创成像区域内部电导率分布的方法。由于许多材料都表现出压阻性,因此电阻抗层析成像技术在结构健康监测中具有巨大的潜力。尽管电阻阻抗层析成像具有许多优点,例如成本低,提供连续感测并具有实时使用的能力,但它受到几个重要因素的限制,例如反问题的不适定性和对大体积的要求。电极阵列以产生高质量的图像。不幸的是,减轻这些限制的当前方法强加了电阻抗层析成像的益处。在此,我们提出了一种在不牺牲其任何优势的情况下增强电阻抗层析成像的多物理场方法。该方法是基于将整体电导率变化与电阻抗层析成像反转过程耦合在一起的,从而增加了其他约束条件,并使问题更少出现。此外,我们在压阻纳米复合材料的情况下利用了物理激励的整体电导率变化。我们通过数值模拟证明了这一概念验证,并证明了通过合并多个电导率变化,可以提高灵敏度矩阵的等级,并可以提高电阻抗层析成像重建的质量。因此,所提出的方法具有减轻电阻抗层析成像的实施负担的潜力,同时能够在不施加电阻抗层析成像的主要优点的情况下同时产生高质量的图像。

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