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Strategies for Efficient Scanning and Reconstruction Methods on Very Large Objects with High Energy X-ray Computed Tomography

机译:使用高能X射线计算机断层扫描对超大物体进行有效扫描和重建的策略

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X-ray computed tomography (CT) is an established tool for industrial non-destructive testing purposes. Yet conventional CT devices pose limitations regarding specimen dimensions and material thicknesses. Here we introduce a novel CT system capable of inspecting very large objects (VLO) like automobiles or sea freight containers in 3-D and discuss strategies for efficient scanning and reconstruction methods. The system utilizes a 9 MeV linear accelerator to achieve high penetration lengths in both dense and high-Z materials. The line detector array has an overall length of 4 meters. The presented system allows for reconstruction volumes of 3.2 meters in diameter and 5 meters in height. First we outline the general capabilities of high energy CT imaging and compare it with state of the art 450 kV X-ray systems. The imaging performance is shown based on experimental results. The second part addresses the problem of considerably higher scanning times when using line detectors compared to area detectors. Reducing the number of projections considerably causes image artifacts with standard reconstruction methods like filtered back projection (FBP). Alternative methods which can provide significantly better results are algebraic reconstruction techniques (ART). One of these is compressed sensing (CS) based ART which we discuss regarding its suitability in respect to FBP. We could prove the feasibility of inspecting VLOs like complete automobiles based on experimental data. CS allows for achieving sufficient image quality in terms of spatial and contrast resolution while reducing the number of projections significantly resulting in faster scanning times.
机译:X射线计算机断层扫描(CT)是用于工业无损检测目的的成熟工具。然而,常规的CT设备在样本尺寸和材料厚度方面存在局限性。在这里,我们介绍一种新颖的CT系统,该系统能够以3D形式检查汽车或海运集装箱等超大物体(VLO),并讨论有效扫描和重建方法的策略。该系统利用9 MeV线性加速器在致密和高Z材料中实现高穿透长度。线检测器阵列的总长度为4米。所提出的系统允许重建直径为3.2米,高度为5米的体积。首先,我们概述了高能CT成像的一般功能,并将其与最新的450 kV X射线系统进行比较。根据实验结果显示了成像性能。第二部分解决了与区域检测器相比,使用线检测器时扫描时间明显更长的问题。减少投影数量会导致使用标准重建方法(如过滤反投影(FBP))的图像伪影。可以提供明显更好结果的替代方法是代数重建技术(ART)。其中之一是基于压缩感知(CS)的ART,我们将就其在FBP方面的适用性进行讨论。我们可以根据实验数据证明检查像完整汽车这样的VLO的可行性。 CS可以在空间和对比度分辨率方面实现足够的图像质量,同时显着减少投影数量,从而缩短扫描时间。

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