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Detection of Explosive Devices using X-ray Backscatter Radiation

机译:使用X射线反向散射辐射检测爆炸装置

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摘要

It is our goal to develop a coded aperture based X-ray backscatter imaging detector that will provide sufficient speed, contrast and spatial resolution to detect Antipersonnel Landmines and Improvised Explosive Devices (IED). While our final objective is to field a hand-held detector, we have currently constrained ourselves to a design that can be fielded on a small robotic platform. Coded aperture imaging has been used by the observational gamma astronomy community for a number of years. However, it has been the recent advances in the field of medical nuclear imaging which has allowed for the application of the technique to a backscatter scenario. In addition, driven by requirements in medical applications, advances in X-ray detection are continually being made, and detectors are now being produced that are faster, cheaper and lighter than those only a decade ago. With these advances, a coded aperture hand-held imaging system has only recently become a possibility. This paper will begin with an introduction to the technique, identify recent advances which have made this approach possible, present a simulated example case, and conclude with a discussion on future work.
机译:我们的目标是开发一种基于编码孔径的X射线反向散射成像探测器,该探测器将提供足够的速度,对比度和空间分辨率,以探测杀伤人员地雷和简易爆炸装置(IED)。虽然我们的最终目标是部署手持式探测器,但目前我们只能将设计局限于可以在小型机器人平台上部署的设计。伽马观测天文学界已使用编码孔径成像多年。但是,正是医学核成像领域的最新进展使该技术可应用于反向散射场景。此外,在医疗应用需求的推动下,X射线检测技术不断取得进步,现在正在生产比十年前更快,更便宜,更轻的检测器。随着这些进步,编码孔径手持式成像系统直到最近才成为可能。本文将从对该技术的介绍开始,确定使该方法成为可能的最新进展,给出一个模拟的实例案例,并以对未来工作的讨论作为结束。

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