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A New Antispoofing Approach for Biometric Devices

机译:一种新的生物识别设备防欺骗方法

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The deployment of fingerprint sensors is increasingly becoming common and has now gained high user acceptance. However, fingerprint sensors are susceptible to spoofing using artificial materials or in worst case to the dismembered fingers. Fake/gummy fingerprints have shown to fool most commercial fingerprint systems. This paper proposes a new method of anti-spoofing using reliable liveness detection. The proposed method of liveness detection is based on the principle of pulse oximetry and involves the source of light originating from a probe at two wavelengths. The light is partly absorbed by haemoglobin, by amounts which differ depending on whether it is saturated with oxygen or deoxygenated haemoglobin. We then perform the computations for the absorption at two wavelengths to estimate the proportion of haemoglobin which is oxygenated. The computed percentage of oxygen in the blood, along with the heart pulse rate, determines the liveness of the enrolled biometric. Our experimental results demonstrate that the developed prototype can successfully thwart the spoof attacks (including those based on dismembered fingers).
机译:指纹传感器的部署变得越来越普遍,并且现在已经获得了用户的高度认可。但是,指纹传感器很容易使用人造材料欺骗,或者在最坏的情况下容易被肢解的手指欺骗。伪造/胶粘指纹已显示出使大多数商业指纹系统蒙混。本文提出了一种利用可靠的活跃度检测技术进行反欺骗的新方法。所提出的活度检测方法基于脉搏血氧饱和度测定原理,并且涉及来自探头的两个波长的光源。光被血红蛋白部分吸收,其吸收量取决于它是否被氧气或脱氧的血红蛋白饱和。然后,我们对两个波长的吸收进行计算,以估计被氧化的血红蛋白的比例。计算出的血液中氧气的百分比以及心脏脉搏率,决定了所登记生物特征的活跃性。我们的实验结果表明,开发的原型可以成功地阻止欺骗攻击(包括基于肢解手指的欺骗)。

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