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Displacement-current phase tomography and electrical capacitance tomography for air-water flow systems

机译:空气-水流系统的位移电流相层析成像和电容层析成像

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Electrical Capacitance Tomography (ECT) is an imaging modality for spatial reconstruction of the dielectric permittivity distribution inside a region of interest (RoI). ECT utilizes mutual capacitance measurements obtained from electrode sensor pairs placed on a dielectric vessel surrounding the RoI. Displacement-Current Phase Tomography (DCPT) is a variant technique based on the phase information of capacitance measurements enabled by the same harware as ECT. DCPT is predicated on having the sensor plates excited by time-harmonic signals in the quasi-static regime, as commonly done in ECT. Under the presence of lossy media in the RoI, it can be shown that DCPT has an extended linear range (versus ECT) for the dependency between the measurement data and the spatial distribution. This result, together with the fact that no electrical contact is necessary unlike electrical impedance tomography (EIT), makes DCPT, either separately or in combination with ECT, a suitable modality for the reconstruction of lossy media distributions. In this summary paper, we present a comparison between DCPT and ECT results for the imaging of air-water flow systems.
机译:电容层析成像(ECT)是一种用于在感兴趣区域(RoI)内对介电常数分布进行空间重构的成像方式。 ECT利用从放置在RoI周围的电介质容器上的电极传感器对获得的互电容测量结果。位移电流相位层析成像(DCPT)是一种变体技术,基于与ECT相同的硬件实现的电容测量的相位信息。就像在ECT中通常所做的那样,DCPT的前提是让传感器板在准静态状态下被时谐信号激励。在RoI中存在损耗媒体的情况下,可以证明DCPT对于测量数据和空间分布之间的相关性具有扩展的线性范围(相对于ECT)。这一结果,加上与电阻抗断层扫描(EIT)不同,不需要电接触的事实,使DCPT单独或与ECT结合,成为重建有损介质分布的合适方式。在此摘要文件中,我们将比较DCPT和ECT结果对空气-水流系统的成像效果。

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