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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >A comparison of algebraic reconstruction techniques for a single-detector muon computed tomography system
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A comparison of algebraic reconstruction techniques for a single-detector muon computed tomography system

机译:单探测器MUON计算机断层扫描系统的代数重建技术比较

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An attenuation-based muon computed tomography algorithm has been developed to enable imaging of large infrastructure using measurements from a single muon tracking module. The performance of the algorithm depends on the choice of reconstruction technique that is incorporated, and is evaluated for seven different reconstruction techniques from the computed tomography literature. The L1-Norm reconstruction technique proposed by Kudo et al. is found to provide the best overall performance. The least-squares conjugate gradient (LSCG) technique and the Simultaneous Iterative Reconstruction Technique (SIRT) are also capable of identifying special nuclear materials, but typically display higher levels of reconstruction artifacts in comparison with L1-Norm. A muon-tomography reconstruction of a simplified simulated reactor core using the L1-Norm algorithm is able to accurately reproduce the geometry, including the identification of missing fuel channels.
机译:已经开发出基于衰减的MUON计算机断层扫描算法,以便使用来自单个μ子跟踪模块的测量来实现大型基础设施的成像。算法的性能取决于结合的重建技术的选择,并评估了来自计算机层析成像文献的七种不同的重建技术。 Kudo等人提出的L1规范重建技术。被发现提供最好的整体性能。最小二乘共轭梯度(LSCG)技术和同时迭代重建技术(SIRT)也能够识别特殊的核材料,但通常与L1-NOR相比显示更高水平的重建伪像。使用L1-NOM算法的简化模拟反应器核的μ分断层重建能够精确地再现几何形状,包括缺失燃料通道的识别。

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