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One-Round Protocols for Two-Party Authenticated Key Exchange

机译:两方身份验证密钥交换的单协议

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Cryptographic protocol design in a two-party setting has often ignored the possibility of simultaneous message transmission by each of the two parties (i.e., using a duplex channel). In particular, most protocols for two-party key exchange have been designed assuming that parties alternate sending their messages (i.e., assuming a bidirectional half-duplex channel). However, by taking advantage of the communication characteristics of the network it may be possible to design protocols with improved latency. This is the focus of the present work. We present a number of provably-secure protocols for two-party authenticated key exchange (AKE) which require only a single round. Our first protocol provides key independence only, and is analyzed in the random oracle model. This scheme matches the most efficient AKE protocols among those found in the literature. Our second scheme additionally provides forward secrecy, and is also analyzed in the random oracle model. Our final protocol provides the same strong security guarantees, but is proven secure in the standard model. This scheme is only slightly less efficient (from a computational perspective) than the previous ones. These last two schemes are the first provably-secure one-round protocols for authenticated 2-party key exchange which provide forward secrecy.
机译:在两方设置中的密码协议设计通常忽略了两方中的每方同时进行消息传输的可能性(即,使用双工通道)。特别地,大多数用于两方密钥交换的协议是在假设当事方交替发送其消息的情况下(即,假设是双向半双工信道)而设计的。然而,通过利用网络的通信特性,可以设计具有改进的等待时间的协议。这是当前工作的重点。我们提出了用于两方身份验证密钥交换(AKE)的许多可证明安全的协议,它们只需要进行一次回合即可。我们的第一个协议仅提供密钥独立性,并在随机预言模型中进行了分析。该方案与文献中发现的最有效的AKE协议相匹配。我们的第二种方案另外提供了前向保密性,并且还在随机预言模型中进行了分析。我们的最终协议提供了同样强大的安全保证,但是在标准模型中已被证明是安全的。从计算的角度来看,此方案的效率仅略低于先前的方案。最后两个方案是用于经过身份验证的两方密钥交换的第一个可证明安全的单轮协议,该协议可提供前向保密性。

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