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Toward Unconstrained Fingerprint Recognition: A Fully Touchless 3-D System Based on Two Views on the Move

机译:迈向无限制指纹识别:基于移动中两个视图的完全非接触式3-D系统

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Touchless fingerprint recognition systems do not require contact of the finger with any acquisition surface and thus provide an increased level of hygiene, usability, and user acceptability of fingerprint-based biometric technologies. The most accurate touchless approaches compute 3-D models of the fingertip. However, a relevant drawback of these systems is that they usually require constrained and highly cooperative acquisition methods. We present a novel, fully touchless fingerprint recognition system based on the computation of 3-D models. It adopts an innovative and less-constrained acquisition setup compared with other previously reported 3-D systems, does not require contact with any surface or a finger placement guide, and simultaneously captures multiple images while the finger is moving. To compensate for possible differences in finger placement, we propose novel algorithms for computing 3-D models of the shape of a finger. Moreover, we present a new matching strategy based on the computation of multiple touch-compatible images. We evaluated different aspects of the biometric system: acceptability, usability, recognition performance, robustness to environmental conditions and finger misplacements, and compatibility and interoperability with touch-based technologies. The proposed system proved to be more acceptable and usable than touch-based techniques. Moreover, the system displayed satisfactory accuracy, achieving an equal error rate of 0.06% on a dataset of 2368 samples acquired in a single session and 0.22% on a dataset of 2368 samples acquired over the course of one year. The system was also robust to environmental conditions and to a wide range of finger rotations. The compatibility and interoperability with touch-based technologies was greater or comparable to those reported in public tests using commercial touchless devices.
机译:非接触式指纹识别系统不需要手指与任何采集表面接触,因此可以提高基于指纹的生物识别技术的卫生水平,可用性和用户可接受性。最准确的非接触式方法可计算指尖的3-D模型。但是,这些系统的一个相关缺点是它们通常需要受约束且高度协作的采集方法。我们提出了一种新颖的,基于3D模型的计算的完全非接触式指纹识别系统。与其他先前报告的3-D系统相比,它采用了创新且约束更少的采集设置,不需要与任何表面或手指放置向导接触,并且可以在手指移动时同时捕获多个图像。为了补偿手指放置的可能差异,我们提出了新颖的算法来计算手指形状的3-D模型。此外,我们提出了一种基于多个触摸兼容图像计算的新匹配策略。我们评估了生物识别系统的不同方面:可接受性,可用性,识别性能,对环境条件和手指错位的鲁棒性以及与基于触摸的技术的兼容性和互操作性。事实证明,与基于触摸的技术相比,所提出的系统更为可接受和有用。此外,该系统显示出令人满意的准确性,在单次会话中获取的2368个样本的数据集上的同等错误率达到0.06%,而在一年的时间内获取的2368个样本的数据集上的同等错误率达到0.22%。该系统对环境条件和手指旋转范围也很稳定。与基于触摸的技术的兼容性和互操作性与使用商用非触摸设备的公开测试中所报告的兼容性和互操作性更高或相当。

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