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Compact Authenticated Key Exchange from Bounded CCA-Secure KEM

机译:绑定CCA-Secure KEM的紧凑型身份验证密钥交换

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How to reduce communication complexity is a common important issue to design cryptographic protocols. This paper focuses on authenticated key exchange (AKE). Several AKE schemes have been studied, which satisfy strong security such as exposure-resilience in the standard model (StdM). However, there is a large gap on communication costs between schemes in the StdM and in the random oracle model. In this paper, we show a generic construction that is significantly compact (i.e., small communication cost) and secure in the StdM. We follow an existing generic construction from key encapsulated mechanism (KEM). Our main technique is to use a bounded chosen-ciphertext secure KEM instead of an ordinary chosen-ciphertext secure KEM. The communication cost can be reduced to half by this technique, and we achieve the most compact AKE scheme in the StdM. Moreover, our construction has instantiations under wider classes of hardness assumptions (e.g., subset-sum problems and multi-variate quadratic systems) than existing constructions. This work pioneers the first meaningful application of bounded chosen-ciphertext secure KEM.
机译:如何降低通信复杂性是设计密码协议的一个常见的重要问题。本文着重于认证密钥交换(AKE)。已经研究了几种AKE方案,这些方案满足了强大的安全性,例如标准模型(StdM)中的曝光适应性。但是,StdM中的方案与随机预言模型中的方案之间的通信成本存在很大差距。在本文中,我们展示了一种通用的结构,该结构非常紧凑(即通信成本低),并且在StdM中是安全的。我们遵循密钥封装机制(KEM)的现有通用构造。我们的主要技术是使用有界的选择密文安全KEM代替普通的选择密文安全KEM。通过这种技术,可以将通信成本降低一半,并且我们在StdM中实现了最紧凑的AKE方案。而且,与现有结构相比,我们的结构在更广泛的硬度假设类别(例如,子集和问题和多元二次系统)下具有实例化。这项工作开创了有界选择密文安全KEM的第一个有意义的应用。

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