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Automated bullet-identification system based on surface topography techniques

机译:基于表面形貌技术的自动子弹识别系统

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摘要

Every firearm has individual characteristics that are as unique to it as fingerprints are to human beings. When a firearm is fired, it transfers these characteristics – in the form of microscopic scratches and dents – to the fired bullets and cartridge casings. The rifling of the barrel of the firearm marks the bullets travelling through it, and the firearm's breech mechanism marks the ammunition's cartridge casing. Characterising these marks is the critical element in identifying firearms.udTraditionally the comparison of ballistic evidence has been a tedious and time-consuming process requiring highly skilled examiners. In the past decade, engineers have created automated ballistics identification systems that meld traditional comparison microscopes with digital cameras, computers, huge databases, and image analysis techniques. This kind of system can help investigators to link crimes by automatically finding similarities among images of bullet but suffering significant drawbacks and minimal matching.udMore recently, approaches based on 3D digital representations of evidence surface topography have started to appear, both in research and industrial products. Potentially the introduction of 3D surface topography measurement can overcome the limitations of digital imaging systems by making the bullet surface measurement reproducible and reliable. A 3D quantitative approach for bullet identification is proposed in this paper. In this system the surface topography of the whole bullet can be acquired for analysis and identification. Primary researches have been done by applying advanced surface topography techniques for bullet marks’ characteristics extraction. A variety of 2D and 3D visualization graphics have also been provided to help firearm examiners to make final decisions.
机译:每个枪支都有其独特的特征,就像人类的指纹一样。枪支射击后,会将这些特征(以微观划痕和凹痕的形式)传递给被射击的子弹和子弹壳。枪支枪管的膛线标记着子弹穿过枪管,枪支的后膛机构标记了弹药的子弹壳。表征这些标记是识别枪支的关键要素。 ud传统上,弹道证据的比较是一个繁琐且耗时的过程,需要高技能的检查员。在过去的十年中,工程师创建了自动弹道识别系统,将传统的比较显微镜与数码相机,计算机,庞大的数据库和图像分析技术相结合。这种系统可以通过自动发现子弹图像之间的相似性但遭受重大弊端和最小匹配来帮助调查人员将犯罪联系起来。 ud最近,基于证据表面形貌的3D数字表示的方法开始在研究和工业领域出现。产品。通过使子弹表面测量具有可重复性和可靠性,潜在地引入3D表面形貌测量可以克服数字成像系统的局限性。本文提出了一种用于子弹识别的3D定量方法。在该系统中,可以获取整个子弹的表面形貌,以进行分析和识别。通过应用先进的表面形貌技术进行子弹标记的特征提取,已经完成了初步研究。还提供了各种2D和3D可视化图形,以帮助枪械检查员做出最终决定。

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