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Smart card-based agents for fair non-repudiation

机译:基于智能卡的代理,实现公平的不可否认性

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Non-repudiation protocols are of great importance for electronic interactions. Different protocols have been proposed in this field, progressively relaxing the requirements on the computing power of both parties, and on the load and involvement of a trusted third party (TTP). Besides, there is a need to provide mobile users with a protocol adequate for ad hoc scenarios, where only unreliable channels can be guaranteed, and where the CA may not be reachable. In this paper we propose a new version of the fair non-repudiation protocol proposed by Giirgens et al. in [Sigrid Guergens, Carsten Rudolph, Holger Vogt, On the security of fair non-repudiation protocols, in: Colin Boyd, Wenbo Mao (Eds.), ISC, Lecture Notes in Computer Science, vol. 2851, Springer, 2003, pp. 193-207]. We show unfair scenarios that can appear if one party controls the communication among the TTP and the other party. We introduce notary agents, which play the TTP role, and run our fair non-repudiation protocol. Notary agents execute inside the smart card, and sign the protocol messages with the user's private key on his behalf. Our approach enables the protocol to run on unreliable channels, disconnected from the CA.
机译:不可否认协议对于电子交互非常重要。在该领域中已经提出了不同的协议,从而逐渐放宽了对双方的计算能力以及对受信任的第三方(TTP)的负载和参与的要求。此外,需要为移动用户提供适合于特殊情况的协议,在这种情况下,只能保证不可靠的信道,并且可能无法访问CA。在本文中,我们提出了Giirgens等人提出的公平不可否认协议的新版本。在[Sigrid Guergens,Carsten Rudolph,Holger Vogt中,关于公平不可否认协议的安全性,在:Colin Boyd,Wenbo Mao(编辑),ISC,《计算机科学讲座》,第1卷。 2851,Springer,2003,pp.193-207]。我们展示了如果一方控制TTP与另一方之间的通信可能会出现的不公平场景。我们引入公证代理人,他们扮演TTP的角色,并运行我们公平的不可否认协议。公证人代理在智能卡内执行,并代表用户使用其私钥对协议消息进行签名。我们的方法使协议能够在与CA断开连接的不可靠通道上运行。

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