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Feasibility Studies on Explosive Detection and Homeland Security Applications Using a Neutron and X-ray Combined Computed Tomography System

机译:用中子和X射线计算机断层扫描系统进行爆炸物探测和国土安全应用的可行性研究

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The successful creation and operation of a neutron and X-ray combined computed tomography (NXCT) system has been demonstrated by researchers at the Missouri University of Science and Technology. The NXCT system has numerous applications in the field of material characterization and object identification in materials with a mixture of atomic numbers represented. Presently, the feasibility studies have been performed for explosive detection and homeland security applications, particularly in concealed material detection and determination of the light atomic number materials. These materials cannot.be detected using traditional X-ray imaging. The new system has the capability to provide complete structural and compositional information due to the complementary nature of X-ray and neutron interactions with materials. The design of the NXCT system facilitates simultaneous and instantaneous imaging operation, promising enhanced detection capabilities of explosive materials, low atomic number materials and illicit materials for homeland security applications. In addition, a sample positioning system allowing the user to remotely and automatically manipulate the sample makes the system viable for commercial applications. Several explosives and weapon simulants have been imaged and the results are provided. The fusion algorithms which combine the data from the neutron and X-ray imaging produce superior images. This paper is a compete overview of the NXCT system for feasibility studies of explosive detection and homeland security applications. The design of the system, operation, algorithm development, and detection schemes are provided. This is the first combined neutron and X-ray computed tomography system in operation. Furthermore, the method of fusing neutron and X-ray images together is a new approach which provides high contrast images of the desired object. The system could serve as a standardized tool in nondestructive testing of many applications, especially in explosives detection and homeland security research.
机译:密苏里科技大学的研究人员证明了中子和X射线联合计算机断层扫描(NXCT)系统的成功创建和运行。 NXCT系统在具有混合原子序数的材料的材料表征和对象识别领域具有许多应用。目前,已经对爆炸物检测和国土安全应用进行了可行性研究,特别是在隐蔽材料的检测和轻原子序数材料的确定中。使用传统的X射线成像无法检测到这些物质。由于X射线和中子与材料的相互作用,新系统具有提供完整的结构和成分信息的能力。 NXCT系统的设计便于同时进行即时成像,有望增强用于国土安全应用的爆炸性材料,低原子序数材料和非法材料的检测能力。此外,允许用户远程自动操作样品的样品定位系统使该系统可用于商业应用。已对几种炸药和武器模拟物成像并提供了结果。融合来自中子和X射线成像的数据的融合算法可产生出色的图像。本文是NXCT系统的竞争性概述,用于爆炸物检测和国土安全应用的可行性研究。提供了系统的设计,操作,算法开发和检测方案。这是第一个运行中的中子和X射线计算机断层扫描系统。此外,将中子和X射线图像融合在一起的方法是一种新方法,可提供所需对象的高对比度图像。该系统可以用作许多应用的无损检测的标准化工具,尤其是在爆炸物检测和国土安全研究中。

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