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SHE based non interactive privacy preserving biometric authentication protocols

机译:基于SHE的非交互式隐私保护生物特征认证协议

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Being unique and immutable for each person, biometric signals are widely used in access control systems. While biometric recognition appeases concerns about password's theft or loss, at the same time it raises concerns about individual privacy. Central servers store several enrolled biometrics, hence security against theft must be provided during biometric transmission and against those who have access to the database. If a server's database is compromised, other systems using the same biometric templates could also be compromised as well. One solution is to encrypt the stored templates. Nonetheless, when using traditional cryptosystem, data must be decrypted before executing the protocol, leaving the database vulnerable. To overcame this problem and protect both the server and the client, biometrics should be processed while encrypted. This is possible by using secure two-party computation protocols, mainly based on Garbled Circuits (GC) and additive Homomorphic Encryption (HE). Both GC and HE based solutions are efficient yet interactive, meaning that the client takes part in the computation. Instead in this paper we propose a non-interactive protocol for privacy preserving biometric authentication based on a Somewhat Homomorphic Encryption (SHE) scheme, modified to handle integer values, and also suggest a blinding method to protect the system from spoofing attacks. Although our solution is not as efficient as the ones based on GC or HE, the protocol needs no interaction, moving the computation entirely on the server side and leaving only inputs encryption and outputs decryption to the client.
机译:对每个人而言,生物特征信号都是唯一且不变的,因此它们广泛应用于访问控制系统中。虽然生物特征识别可以缓解对密码被盗或丢失的担忧,但同时也会引起对个人隐私的担忧。中央服务器存储多个已注册的生物特征,因此必须在生物特征传输期间提供针对盗窃的安全性,以及针对那些有权访问数据库的安全性。如果服务器的数据库遭到破坏,则使用相同生物特征模板的其他系统也可能受到破坏。一种解决方案是对存储的模板进行加密。但是,当使用传统的密码系统时,必须在执行协议之前对数据进行解密,从而使数据库容易受到攻击。为了克服此问题并保护服务器和客户端,生物特征应在加密的同时进行处理。这可以通过使用主要基于乱码电路(GC)和加性同态加密(HE)的安全的两方计算协议来实现。基于GC和HE的解决方案都是高效且交互的,这意味着客户端可以参与计算。相反,在本文中,我们提出了一种基于某种同态加密(SHE)方案的非交互式保护隐私生物身份认证的协议,该协议经过修改以处理整数值,还提出了一种盲目的方法来保护系统免受欺骗攻击。尽管我们的解决方案不如基于GC或HE的解决方案高效,但该协议无需交互,完全将计算移到服务器端,仅将输入加密和解密输出留给客户端。

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