有状态公钥加密:如何消除间隙假设并保持严格缩减

Peng Yang, Rui Zhang, Kanta Matsuura
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引用次数: 3

摘要

最近引入的有状态公钥加密方案比传统的无状态加密方案效率更高。然而,以前的建议要么是基于强有力的假设;或者承认非常松散的安全削减。在本文中,我们改进了这些方面,提出了一种对计算性Diffie-Hellman假设具有严格安全性降低的有状态公钥加密方案(参见[5]中的gap Diffie-Hellman),以及一种对计算性双线性Diffie-Hellman问题具有更严格安全性降低(比[12])的基于状态身份的加密方案。值得提醒的是,总是希望有严格约简的证明,以便实际方案具有实际意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stateful public key encryption: How to remove gap assumptions and maintaining tight reductions
Stateful public key encryption schemes are introduced recently with improved efficiency over traditional stateless schemes. However, previous proposals are either based on strong assumptions; or admitting very loose security reductions. In this paper, we improve these aspects by presenting a stateful public key encryption scheme with tight security reduction to the computational Diffie-Hellman assumption (cf. gap Diffie-Hellman in [5]), as well as a stateful identity based encryption scheme with tighter security reduction (than [12]) to the computational bilinear Diffie-Hellman problem. It is worth reminding that it is always desirable to have the proofs with tight reductions such that the actual schemes can be practically-meaningful.
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