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首页> 外文期刊>Systems, Man, and Cybernetics, Part C: Applications and Reviews, IEEE Transactions on >Multifactor Identity Verification Using Aggregated Proof of Knowledge
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Multifactor Identity Verification Using Aggregated Proof of Knowledge

机译:使用汇总知识证明的多因素身份验证

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摘要

The problem of identity theft, that is, the act of impersonating others’ identities by presenting stolen identifiers or proofs of identities, has been receiving increasing attention because of its high financial and social costs. In this paper, we address the problem of verification of such identifiers and proofs of identity. Our approach is based on the concept of privacy preserving multifactor verification of such identifiers and proofs achieved by the development of a new cryptographic primitive, which uses aggregate signatures on commitments that are then used for aggregate zero-knowledge proof of knowledge (ZKPK) protocols. The resultant signatures are very short and the ZKPs are succinct and efficient. We prove the security of our scheme under the co-gap Diffie–Hellman (co-GDH) assumption for groups with bilinear maps. Our cryptographic scheme is an improvement in terms of the performance, flexibility, and storage requirements than the existing efficient ZKPK techniques that may be used to prove under zero knowledge and the knowledge of multiple secrets.
机译:身份盗窃问题,即通过提供被盗的标识符或身份证明来冒充他人身份的行为,由于其高昂的经济和社会成本而受到越来越多的关注。在本文中,我们解决了此类标识符和身份证明的验证问题。我们的方法基于这样的标识符的隐私保护多因素验证的概念,以及通过开发新的密码原语实现的证据,该密码原语对承诺使用聚合签名,然后将其用于聚合零知识知识证明(ZKPK)协议。生成的签名非常短,ZKP简洁高效。我们用双线性图群的协缺口Diffie-Hellman(co-GDH)假设证明了我们方案的安全性。与现有的有效ZKPK技术相比,我们的密码方案在性能,灵活性和存储要求方面进行了改进,而现有的ZKPK技术可用于在零知识和多重机密知识下进行证明。

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