论文标题
使用物理标识符用于退化和较少嘈杂的身份验证渠道的秘密键协议
Secret-Key Agreement Using Physical Identifiers for Degraded and Less Noisy Authentication Channels
论文作者
论文摘要
基于生物识别或物理标识符的Secret-Key协议是一种有前途的安全协议,可通过轻巧的安全性为用户或设备身份验证用户。在先前的研究中,分析了这种方案的基本限制,结果表明,两个辅助随机变量参与了容量区域表达式。但是,对于这两个辅助随机变量,计算容量区域的复杂性可能会高度高。为了解决这个问题,我们探索了在容量区域表达中仅需要一个辅助随机变量的认证渠道类。据透露,对于退化和较少嘈杂的身份验证通道的类别,单个辅助随机变量足以表达能力区域。作为具体示例,我们得出了二元和高斯来源的闭合形式表达式。此外,还提供了高斯来源的数值计算,以显示在给定存储率下的秘密钥匙和隐私裂缝率之间的权衡,并说明入学阶段的噪声如何影响容量区域。
Secret-key agreement based on biometric or physical identifiers is a promising security protocol for authenticating users or devices with small chips due to its lightweight security. In previous studies, the fundamental limits of such a protocol were analyzed, and the results showed that two auxiliary random variables were involved in the capacity region expressions. However, with these two auxiliary random variables, the complexity of computing the capacity regions may be prohibitively high. To deal with this problem, we explore classes of authentication channels that require only one auxiliary random variable in the expressions of the capacity regions. It is revealed that for the classes of degraded and less noisy authentication channels, a single auxiliary random variable is sufficient to express the capacity regions. As specific examples, we derive the closed-form expressions for binary and Gaussian sources. Also, numerical calculations for Gaussian sources are provided to show the trade-off between secret-key and privacy-leakage rates under a given storage rate, and to illustrate how the noise in the enrollment phase affects the capacity region.