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Dynamic behavior analysis in compressed fingerprint videos

机译:压缩指纹视频中的动态行为分析

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摘要

Traditional fingerprint acquisition is limited to single-image capture and processing. With the advent of faster capture hardware, faster processors, and advances in video compression standards, newer systems can capture and exploit video signals for tasks that are difficult using a single image. We propose the use of fingerprint video sequences to investigate detecting two aspects of the dynamic behavior of fingerprints. Specifically, we are interested in the detection of distortion of fingerprint impressions due to excessive force and the detection of the positioning of fingers during image capture. These issues often lead to difficulties in establishing a precise match between acquired images. The proposed techniques investigate dynamic characteristics of fingerprints across video sequence frames. A significant advantage of our approach for distortion analysis is that it works directly on MPEG-1,-2 encoded fingerprint video bitstreams. The proposed methods have been tested on the NIST-24 live-scan fingerprint video database and the results are promising. We also describe a new concept called the "resultant biometrics", a new type of biometrics which has both a physiological, physical (e.g., force, torque, linear motion, rotation) component and/or a temporal characteristic, added by a subject to an existing biometric. This resultant biometric is both desirable and efficient in terms of easy modification of compromised biometrics and is harder to produce with spoof body parts.
机译:传统的指纹采集仅限于单图像捕获和处理。随着更快的捕获硬件,更快的处理器以及视频压缩标准的发展,较新的系统可以捕获和利用视频信号来完成使用单个图像难以完成的任务。我们建议使用指纹视频序列来调查检测指纹动态行为的两个方面。具体而言,我们对由于过度用力而导致的指纹印记失真的检测以及在图像捕获期间检测手指的位置感兴趣。这些问题通常导致难以在获取的图像之间建立精确匹配。提出的技术研究了跨视频序列帧的指纹的动态特性。我们用于失真分析的方法的一个显着优势是,它可以直接在MPEG-1,-2编码的指纹视频比特流上工作。所提出的方法已经在NIST-24实时扫描指纹视频数据库上进行了测试,结果令人鼓舞。我们还描述了一种称为“结果生物特征”的新概念,这是一种新型的生物特征,它具有生理,物理(例如,力,转矩,线性运动,旋转)成分和/或时间特征,由受试者添加到现有的生物特征识别。就容易修改受损的生物特征而言,这种最终的生物特征既是理想的又是有效的,并且很难用欺骗的身体部位来制造。

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