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The development of an 'on-belt tomosynthesis' system for cost-effective (3D) baggage screening.

机译:用于成本效益(3D)行李筛查的“皮带断层合成”系统的开发。

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This study describes a cost-effective check-in baggage screening system, based on 'on-belt tomosynthesis' (ObT) and close-range photogrammetry, which is designed to address the limitations of the most common method of baggage screening, conventional projection radiography. The latter's limitations can lead to loss of information and an increase in baggage handling time, as baggage is manually searched or screened with more advanced systems. This project proposes a system that overcomes such limitations creating a cost-effective automated pseudo-3D imaging system, by combining x-ray and optical imaging to form digital tomograms. Tomosynthesis is the creation of pseudo-3D images from a number of 2D projections which are acquired at a range of orientations around a static object. In the ObT system, instead of moving the source and detectors around the object, as in conventional CT, the movement of bags around bends in the baggage transport system provides the required relative motion between source, object and a fan configuration of strip-detectors. For image reconstruction it is necessary to accurately establish the sequential position and orientation of each bag as it is imaged. For this, a low-cost photogrammetric solution is used, based on geometrically calibrated web-cameras positioned around the bends where the bags are imaged. This paper describes a study demonstrating the feasibility of implementing close-range photogrammetry to a potential ObT system, for accurate determination of the object location. After this, an optimum ObT system is designed and built, the process of which is presented in this paper.
机译:这项研究描述了一种基于“带状断层合成”(ObT)和近距离摄影测量的经济有效的托运行李检查系统,旨在解决最常见的行李检查方法,传统投影放射照相法的局限性。后者的局限性可能导致信息丢失,并增加行李处理时间,因为使用更先进的系统手动搜索或筛选行李。该项目提出了一种系统,该系统通过结合X射线和光学成像以形成数字断层图,从而克服了这些局限,从而创建了具有成本效益的自动化伪3D成像系统。断层合成是根据许多2D投影创建伪3D图像,这些2D投影是在围绕静态对象的一系列方向上获取的。在ObT系统中,不是像传统的CT那样使源和检测器围绕物体移动,而是使行李在行李运输系统中围绕弯头移动,从而在源,物体和带状检测器的风扇配置之间提供了所需的相对运动。对于图像重建,有必要在每个袋子成像时准确确定其顺序位置和方向。为此,使用了一种低成本的摄影测量解决方案,该解决方案基于放置在成像袋的弯头周围的几何校准网络摄像头。本文描述了一项研究,该研究表明了对潜在的ObT系统实施近距离摄影测量的可行性,以精确确定物体的位置。在此之后,设计并构建了一个最佳的ObT系统,本文介绍了其过程。

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