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Towards Contactless, Low-Cost and Accurate 3D Fingerprint Identification

机译:迈向非接触,低成本和准确的3D指纹识别

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Human identification using fingerprint impressions has been widely studied and employed for more than 2000 years. Despite new advancements in the 3D imaging technologies, widely accepted representation of 3D fingerprint features and matching methodology is yet to emerge. This paper investigates 3D representation of widely employed 2D minutiae features by recovering and incorporating (i) minutiae height z and (ii) its 3D orientation φ information and illustrates an effective matching strategy for matching popular minutiae features extended in 3D space. One of the obstacles of the emerging 3D fingerprint identification systems to replace the conventional 2D fingerprint system lies in their bulk and high cost, which is mainly contributed from the usage of structured lighting system or multiple cameras. This paper attempts to addresses such key limitations of the current 3D fingerprint technologies bydeveloping the single camera-based 3D fingerprint identification system. We develop a generalized 3D minutiae matching model and recover extended 3D fingerprint features from the reconstructed 3D fingerprints. 2D fingerprint images acquired for the 3D fingerprint reconstruction can themselves be employed for the performance improvement and have been illustrated in the work detailed in this paper. This paper also attempts to answer one of the most fundamental questions on the availability of inherent discriminableinformation from 3D fingerprints. The experimental results are presented on a database of 240 clients 3D fingerprints, which is made publicly available to further research efforts in this area, and illustrate the discriminant power of 3D minutiae representation andmatching to achieve performance improvement.
机译:使用指纹印记进行人类识别已被广泛研究并应用了2000多年。尽管3D成像技术取得了新的进步,但3D指纹特征和匹配方法的广泛接受的表示仍未出现。本文通过恢复和合并(i)细节高度z和(ii)其3D方向φ信息来研究广泛使用的2D细节特征的3D表示,并说明了一种有效的匹配策略,用于匹配在3D空间中扩展的流行细节特征。替代常规2D指纹系统的新兴3D指纹识别系统的障碍之一在于其体积大且成本高,这主要是由于使用结构化照明系统或多个摄像头造成的。本文试图通过开发基于单相机的3D指纹识别系统来解决当前3D指纹技术的这些关键限制。我们开发了广义的3D细节匹配模型,并从重建的3D指纹中恢复了扩展的3D指纹特征。为3D指纹重建而获取的2D指纹图像本身可以用于性能改进,并且已在本文详细介绍的工作中进行了说明。本文还试图回答关于3D指纹固有的可区分信息的可用性的最基本问题之一。实验结果显示在240个客户端3D指纹数据库中,该数据库已公开提供,可供在此领域进行进一步的研究工作,并说明了3D细节表示和匹配以实现性能改进的判别力。

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