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A New Approach For Formulating Randomized Cryptographic Key Generation Using Cancelable Biometrics

机译:使用取消生物识别法配制随机加密键生成的新方法

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The problem of identity theft can be handled effectively by the integration of biometrics and cryptography. Lately, researchers and experimenters have been greatly attracted by the improved performance (protection) of cryptographic keys produced from biometrics. However, there exists an eternal association between the biometric and the user, where in, alteration is not viable. Hence, a compromise of the biometric features may consequently lead to a possibly perpetual loss of biometric for all the applications that employ it. The generation of replaceable biometric templates through cancelable biometrics has emerged as a possible solution to the aforesaid problem. In this paper, we propose an efficient approach for cryptographic key generation from fingerprint biometrics using random-valued cancelable templates. The proposed approach is composed of three phases namely: 1) Extraction of minutiae points from the fingerprint image, 2) Generation of cancelable biometric templates with added security and 3) Cryptographic key generation from the Secured cancelable template. The resultant cryptographic key thus generated is irrevocable and unique to a particular cancelable template, making the generation of new cancelable templates and cryptographic keys feasible. The experimental results portray the effectiveness of the cancelable template and the cryptographic key generated.
机译:通过生物识别和密码的集成可以有效地处理身份盗用问题。最近,研究人员和实验者受到生物识别系统生产的加密键的改进性能(保护)非常吸引。然而,生物识别和用户之间存在永恒关联,其中改变不可行。因此,生物识别特征的折衷可能导致所有采用它的应用的生物识别可能永久损失。通过可取消的生物识别技术产生可更换的生物识别模板作为上述问题的可能解决方案。在本文中,我们提出了一种利用随机可消化模板从指纹生物识别技术产生的高效方法。所提出的方法由三个阶段组成:1)从指纹图像提取来自指纹图像的细节点,2)从安全的可消化模板中产生附加的安全性和3)加密密钥生成。由此生成的结果加密键是不可撤销的,并且对特定的取消模板是独一无二的,使得产生新的可消化模板和加密密钥可行的。实验结果描绘了所取消模板的有效性和生成的加密密钥。

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