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A blind system identification approach to cancelable fingerprint templates

机译:取消指纹模板的盲系统识别方法

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摘要

Cancelable biometrics is an important biometric template protection scheme. With no a priori image pre alignment, alignment-free cancelable fingerprint templates do not suffer from inaccurate singular point detection. In this paper, we develop a blind system identification approach to the design of alignment free cancelable fingerprint templates. The binary string, derived from quantized pair-minutiae vectors, is to be secured and its frequency samples act as the input to the proposed algorithm. Motivated by the identifiability of the source signal in blind system identification, we propose to protect the binary string's frequency samples, which are treated as the source input, by countering or dissatisfying the identifiability condition so that they cannot be recovered from the output complex vector (transformed template). The proposed transform is irreversible because when the identifiability condition is not met, non identification of the source input is theoretically guaranteed in blind system identification. Security, matching performance and resource requirement are the main factors in cancelable template design. With the size of the transform parameter key and transformed templates being moderate, the proposed method suits resource-limited applications, e.g., smartcards, driver license and mobile phones. Evaluation of the proposed method over FVC2002 DB1, DB2 and DB3 shows that the new method exhibits favorable performance compared to state-of-the-art alignment-free cancelable fingerprint templates. (C) 2016 Elsevier Ltd. All rights reserved.
机译:可取消的生物识别技术是重要的生物识别模板保护方案。在没有先验图像预对准的情况下,免对准的可取消指纹模板不会遭受不准确的奇异点检测。在本文中,我们开发了一种盲系统识别方法来设计无对齐的可取消指纹模板。从量化的对细节量向量派生的二进制字符串将得到保护,其频率样本将作为所提出算法的输入。出于盲系统识别中源信号可识别性的动机,我们建议通过对付或不满足可识别性条件来保护二进制字符串的频率样本(被视为源输入),以使它们无法从输出复数向量中恢复(转换后的模板)。所提出的变换是不可逆的,因为当不满足可识别性条件时,在盲系统识别中理论上可以保证对源输入的不识别。安全性,匹配性能和资源需求是可取消模板设计的主要因素。在变换参数密钥和变换的模板的大小适中的情况下,所提出的方法适合于资源受限的应用,例如,智能卡,驾驶执照和移动电话。对FVC2002 DB1,DB2和DB3上提出的方法进行的评估表明,与最新的免对准可取消指纹模板相比,该新方法表现出良好的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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