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A Unified Framework for Trapdoor-Permutation-Based Sequential Aggregate Signatures

机译:基于陷阱门置换的顺序聚合签名的统一框架

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We give a framework for trapdoor-permutation-based sequential aggregate signatures (SAS) that unifies and simplifies prior work and leads to new results. The framework is based on ideal ciphers over large domains, which have recently been shown to be realizable in the random oracle model. The basic idea is to replace the random oracle in the full-domain-hash signature scheme with an ideal cipher. Each signer in sequence applies the ideal cipher, keyed by the message, to the output of the previous signer, and then inverts the trapdoor permutation on the result. We obtain different variants of the scheme by varying additional keying material in the ideal cipher and making different assumptions on the trapdoor permutation. In particular, we obtain the first scheme with lazy verification and signature size independent of the number of signers that does not rely on bilinear pairings. Since existing proofs that ideal ciphers over large domains can be realized in the random oracle model are lossy, our schemes do not currently permit practical instantiation parameters at a reasonable security level, and thus we view our contribution as mainly conceptual. However, we are optimistic tighter proofs will be found, at least in our specific application.
机译:我们为基于陷门置换的顺序聚合签名(SAS)提供了一个框架,该框架统一并简化了先前的工作并带来了新的结果。该框架基于大域上的理想密码,最近证明在随机预言模型中可以实现。基本思想是用理想密码代替全域哈希签名方案中的随机预言。每个签名者依次将由消息键入的理想密码应用于前一个签名者的输出,然后对结果的陷门置换进行反转。通过更改理想密码中的其他密钥材料并对活板门置换进行不同的假设,我们获得了该方案的不同变体。特别地,我们获得了具有懒惰验证和签名大小的第一个方案,该方案与不依赖于双线性配对的签名者的数量无关。由于现有的证明可以在随机预言模型中实现大域理想密码的证明是有损的,因此我们的方案目前不允许在合理的安全级别上使用实际的实例化参数,因此,我们认为我们的贡献主要是概念上的。但是,我们很乐观,至少在我们的特定应用中会找到更严格的证明。

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