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Geometrical approach for automatic detection of liquid surfaces in 3D computed tomography baggage imagery

机译:在3D计算机断层摄影行李图像中自动检测液面的几何方法

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This study presents a novel method for liquid detection within three-dimensional (3D) computed tomography (CT) baggage inspection imagery. Liquid detection within airport security is currently of significant interest due to security threats associated with liquid explosives. In this paper, we propose a robust technique based on the automatic identification of universal geometric properties of liquids within 3D space. The proposed approach is based on two stages of geometric fitting. First, we identify the 3D plane which fits to the horizontally oriented surface of the liquid recognising the universal self-levelling property of liquids in any given container. Second, we conduct two-dimensional shape analysis to highlight the shape of the liquid surface at a given level within the container using a least squares elliptical fitting approach. The proposed approach relies on the fact that occurrences of such perfectly aligned horizontal planes within a 3D CT security baggage scan are generally unlikely. Occurrences of such instance are thus indicative of liquid presence. Our results, over an extended set of complex test examples, confirm a liquid detection rate of 85-98% with a moderate processing time. Furthermore, as this proposed approach is based purely on the geometric properties of liquids and robust geometrical shape detection, this methodology is intrinsic to the 3D nature of the resulting CT data and not dependent on any exemplar training imagery.
机译:这项研究提出了一种在三维(3D)计算机断层扫描(CT)行李检查图像中进行液体检测的新方法。由于与液体炸药相关的安全威胁,目前在机场安全内进行液体检测受到了极大的关注。在本文中,我们提出了一种基于自动识别3D空间内液体的通用几何特性的鲁棒技术。所提出的方法基于几何拟合的两个阶段。首先,我们识别3D平面,该平面适合液体的水平定向表面,从而认识到任何给定容器中液体的通用自流平特性。其次,我们使用最小二乘椭圆拟合方法进行二维形状分析,以突出显示容器内给定高度的液体表面形状。所提出的方法基于这样的事实,即通常不太可能在3D CT安全行李扫描中出现这种完全对齐的水平面。因此,这种情况的出现指示液体的存在。我们在扩展的复杂测试示例集上的结果证实,在中等处理时间的情况下,液体检出率为85-98%。此外,由于此提议的方法仅基于液体的几何特性和鲁棒的几何形状检测,因此该方法是所得CT数据的3D本质所固有的,并且不依赖于任何示例训练图像。

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