BioP-TAP: An efficient method of template protection and two-factor authentication protocol combining biometric and PUF

Author:

Zhang Hui12,Bian Weixin12,Jie Biao12,Sun Shuwan12

Affiliation:

1. School of Computer and Information, Anhui Normal University, Wuhu, China

2. Anhui Province Key Laboratory of Network and Information Security, Wuhu, China

Abstract

We propose an efficient identity authentication protocol based on cancelable biometric and Physical Uncloable Function (PUF) namely BioP-TAP, which realizes the two-way authentication between the user and the server. Specially, the concept of biometric template protection is added to the proposed protocol to better protect user privacy. We use the properties of PUF to generate the cancelable biometric and adds it to the authentication protocol. Then, we design a complete authentication protocol combining the elliptic curve Pedersen commitment and Zero-knowledge proof. Finally, we adopt the method of combining formalization and non-formalization to carry out scientific evaluation from multiple perspectives. And the performance analysis and comparison with existing schemes are employed to evaluate the proposed scheme, so as to ensure the effectiveness and security. The results show that the proposed method is more effective for security than existing methods, and more suitable for the user biometric authentication in a multi-server environment.

Publisher

IOS Press

Subject

Artificial Intelligence,General Engineering,Statistics and Probability

Reference24 articles.

1. A biometric authentication scheme for telecare medicine information systems with nonce;Awasthi;Journal of Medical Systems,2013

2. Security of facial biometric authentication for attendance system;Wati;Multimedia Tools and Applications,2021

3. A secure dynamic id based remote userauthentication scheme for multi-server environment;Liao;Journal of Medical Systems,2009

4. A Secure biometrics and PUFs-based authentication scheme with key agreement for multi-server environments;Zhao;IEEE Access,2020

5. Security evaluation of biometric authentication systems under real spoofing attacks;Biggio;IET Biometrics,2012

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