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Defence RD Canada research on nuclear methods of landmine detection

机译:国防研发加拿大地雷检测核方法研究

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Defence R&D Canada (DRDC) has an active research and development program on detection of landmines using nuclear methods. They are intended for confirmation by detection of characteristic radiation or imaging of back scattered intensity distributions. Both vehicle-mounted and person-portable systems are being developed. Research on thermal neutron analysis (TNA) was initiated in 1994 to provide a confirmation detector for the DRDC developed multisensor, teleoperated, vehicle-mounted, landmine detection system. A version is now commercially available and four units have been fielded by the Canadian Land Forces. A prototype next generation TNA, which uses an electronic neutron generator as a source, has been constructed. Preliminary tests have shown improved performance. Research is now ongoing to investigate the addition of a fast neutron analysis capability to the next generation TNA. Characterization studies and software improvements are being conducted. Related research is investigating whether fast inorganic scintillator materials can provide an improvement in energy resolution. For person-portable applications, both neutron and photon irradiation processes are being investigated. A prototype landmine detector based on neutron moderation imaging has been completed and preliminary images of antipersonnel mine simulants obtained. It consists of a novel thermal neutron imaging system, a unique neutron source to uniformly irradiate the underlying ground and hardware and software for image generation and enhancement. Simulations show that it should provide a significant improvement over non-imaging neutron backscatter systems. X-ray backscatter imaging research is concentrating on non-collimated approaches to enable it to be person-portable. One such method, coded aperture imaging, is being investigated and extensive simulations using Geant4 have demonstrated its merits. Initial joint experiments with UC San Diego, using their HEXIS detector, have been conducted.
机译:国防研发加拿大(DRDC)在利用核方法检测地雷有积极的研发方案。它们旨在通过检测背散射强度分布的特征辐射或成像来确认。正在开发车载和人员便携式系统。在1994年开始热中子分析(TNA),为DRDC开发的多传感器,漫手术,车载,地雷检测系统提供了一个确认探测器。现在是一个版本的商业上可用,加拿大土地部队有四个单位。构造了使用电子中子发生器作为源的原型下一代TNA。初步测试显示了性能提高。现在正在进行研究,以调查添加到下一代TNA的快节中子分析能力。正在进行表征研究和软件改进。相关研究正在研究快速无机闪烁体材料是否可以提供能量分辨率的提高。对于人的便携式应用,正在研究中子和光子辐射过程。已经完成了基于中子促型成像的原型地图探测器,并获得了止汗矿山矿床的初步图像。它由新型热中子成像系统组成,独特的中子源,以均匀地照射潜在的地面和硬件和软件,用于图像生成和增强。模拟表明它应该提供对非成像中子反向散射系统的显着改进。 X射线反向散射成像研究专注于非准直方法,使其能够成为人的便携式。正在研究一种这样的方法,编码孔径成像,使用Geant4进行广泛的模拟已经证明了其优点。已经进行了使用eC San Diego的初始联合实验,使用其肝脏探测器。

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