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Electrodynamics Sensor for the Image Reconstruction Process in an Electrical Charge Tomography System

机译:用于电荷层析成像系统中图像重建过程的电动力学传感器

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摘要

Electrical charge tomography (EChT) is a non-invasive imaging technique that is aimed to reconstruct the image of materials being conveyed based on data measured by an electrodynamics sensor installed around the pipe. Image reconstruction in electrical charge tomography is vital and has not been widely studied before. Three methods have been introduced before, namely the linear back projection method, the filtered back projection method and the least square method. These methods normally face ill-posed problems and their solutions are unstable and inaccurate. In order to ensure the stability and accuracy, a special solution should be applied to obtain a meaningful image reconstruction result. In this paper, a new image reconstruction method – Least squares with regularization (LSR) will be introduced to reconstruct the image of material in a gravity mode conveyor pipeline for electrical charge tomography. Numerical analysis results based on simulation data indicated that this algorithm efficiently overcomes the numerical instability. The results show that the accuracy of the reconstruction images obtained using the proposed algorithm was enhanced and similar to the image captured by a CCD Camera. As a result, an efficient method for electrical charge tomography image reconstruction has been introduced.
机译:电荷层析成像(EChT)是一种非侵入性成像技术,旨在基于管道周围安装的电动力传感器测量的数据来重建所输送物料的图像。电荷层析成像中的图像重建至关重要,并且之前尚未得到广泛研究。之前已经介绍了三种方法,即线性反投影方法,滤波反投影方法和最小二乘法。这些方法通常面临不适的问题,其解决方案不稳定且不准确。为了确保稳定性和准确性,应采用特殊的解决方案以获得有意义的图像重建结果。在本文中,将介绍一种新的图像重建方法-带正则化最小二乘(LSR)来重建重力模式输送带中用于电荷层析成像的物料图像。基于仿真数据的数值分析结果表明,该算法有效地克服了数值不稳定性。结果表明,使用该算法获得的重建图像的准确性得到了提高,与CCD相机捕获的图像相似。结果,已经引入了用于电荷断层摄影图像重建的有效方法。

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