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首页> 外文期刊>IEEE Transactions on Information Theory >Ensemble Performance of Biometric Authentication Systems Based on Secret Key Generation
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Ensemble Performance of Biometric Authentication Systems Based on Secret Key Generation

机译:基于密钥生成的生物特征认证系统集成性能

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We study the ensemble performance of biometric authentication systems, based on secret key generation, which work as follows. In the enrollment stage, an individual provides a biometric signal that is mapped into a secret key and a helper message, the former being prepared to become available to the system at a later time (for authentication), and the latter is stored in a public database. When an authorized user requests authentication, claiming his/her identity as one of the subscribers, he/she has to provide a biometric signal again, and then the system, which retrieves also the helper message of the claimed subscriber, produces an estimate of the secret key, that is finally compared with the secret key of the claimed user. In case of a match, the authentication request is approved, otherwise, it is rejected. Referring to an ensemble of systems based on Slepian-Wolf binning, we provide a detailed analysis of the false-reject (FR) and false-accept (FA) probabilities, for a wide class of stochastic decoders. We also derive converse bounds. The converse bound of the FA probability matches the direct theorem, whereas the one for the FR probability is tight for some ranges of rates. Finally, we outline derivations of the secrecy leakage (for the typical code in the ensemble) and the privacy leakage.
机译:我们研究基于秘密密钥生成的生物特征认证系统的整体性能,其工作原理如下。在注册阶段,一个人提供一个生物特征信号,该信号被映射到一个秘密密钥和一个帮助消息中,前者准备在以后的某个时间可供系统使用(用于身份验证),而后者则存储在公共场所数据库。当授权用户要求身份验证并声明其身份为订户之一时,他/她必须再次提供生物识别信号,然后系统(该系统还检索所要求的订户的帮助消息)会生成一个估计值。密钥,最终将其与要求保护的用户的密钥进行比较。如果匹配,则认证请求被批准,否则被拒绝。参考基于Slepian-Wolf装仓的系统的集成,我们为各种随机解码器提供了错误拒绝(FR)和错误接受(FA)概率的详细分析。我们还推导了逆界。 FA概率的逆界与直接定理匹配,而FR概率的逆界在某些速率范围内是紧密的。最后,我们概述了秘密泄漏(对于集成中的典型代码)和隐私泄漏的派生。

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