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Simplified security notions of direct anonymous attestation and a concrete scheme from pairings

机译:直接匿名证明的简化安全概念以及配对的具体方案

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摘要

Direct Anonymous Attestation (DAA) is a cryptographic mechanism that enables remote authentication of a user while preserving privacy under the user's control. The DAA scheme developed by Brickell, Camenisch, and Chen has been adopted by the Trust Computing Group for remote anonymous attestation of Trusted Platform Module, which is a small hardware device with limited storage space and communication capability. In this paper, we provide two contributions to DAA. We first introduce simplified security notions of DAA including the formal definitions of user controlled anonymity and traceability. We then propose a new DAA scheme from elliptic curve cryptography and bilinear maps. The lengths of private keys and signatures in our scheme are much shorter than the lengths in the original DAA scheme, with a similar level of security and computational complexity. Our scheme builds upon the Camenisch-Lysyanskaya signature scheme and is efficient and provably secure in the random oracle model under the LRSW (stands for Lysyanskaya, Rivest, Sahai and Wolf) assumption and the decisional Bilinear Diffie-Hellman assumption.
机译:直接匿名证明(DAA)是一种加密机制,可实现用户的远程身份验证,同时在用户的控制下保护隐私。由Brickell,Camenisch和Chen开发的DAA方案已被Trust Computing Group(信任计算小组)采用,用于对Trusted Platform Module(受信任的平台模块)进行远程匿名认证,Trusted Platform Module是一种受限制的存储空间和通信能力的小型硬件设备。在本文中,我们对DAA做出了两点贡献。我们首先介绍DAA的简化安全概念,包括用户控制的匿名性和可追溯性的正式定义。然后,我们从椭圆曲线密码学和双线性图提出了一种新的DAA方案。我们的方案中的私钥和签名的长度比原始DAA方案中的长度短得多,并且具有相似的安全性和计算复杂度。我们的方案基于Camenisch-Lysyanskaya签名方案,在LRSW(代表Lysyanskaya,Rivest,Sahai和Wolf)假设和决策双线性Diffie-Hellman假设下的随机预言模型中有效且可证明地安全。

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