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Group Secret Handshakes Or Affiliation-Hiding Authenticated Group Key Agreement

机译:小组秘密握手或隶属关系认证群体重点协议

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Privacy concerns in many aspects of electronic communication trigger the need to re-examine – with privacy in mind – familiar security services, such as authentication and key agreement. An Affiliation-Hiding Group Key Agreement (AH-AGKA) protocol (also known as Group Secret Handshake) allows a set of participants, each with a certificate issued by the same authority, to establish a common authenticated secret key. In contrast to standard AGKA protocols, an AH-AGKA protocol has the following privacy feature: If Alice, who is a member of a group G, participates in an AH-AGKA protocol, none of the other protocol participants learn whether Alice is a member of G, unless these participants are themselves members of group G. Such protocols are useful in suspicious settings where a set of members of a (perhaps secret) group need to authenticate each other and agree on a common secret key, without revealing their affiliations to outsiders.In this paper we strengthen the prior definition of AH-AGKA so that the security and privacy properties are maintained under any composition of protocol instances. We also construct two novel AH-AGKA protocols secure in this new and stronger model under the RSA and Gap Diffie-Hellman assumptions, respectively. Each protocol involves only two communication rounds and few exponentiations per player (e.g., no bilinear map operations). Interestingly, these costs are essentially the same as those of the underlying (unauthenticated) group key agreement protocol. Finally, our protocols, unlike prior results, retain their security and privacy properties without the use of one-time certificates.
机译:电子通信的许多方面的隐私问题触发了重新检查的需要 - 熟悉的安全服务,如身份验证和密钥协议。一个隶属申请组重点协议(AH-AGKA)协议(也称为组秘密握手)允许一组参与者,每个参与者都有一个相同权限颁发的证书,以建立一个常见的经过身份验证的密钥。与标准的AGKA协议相比,AH-AGKA协议具有以下隐私功能:如果Alice是G组的成员,则参加AH-AGKA协议,其他协议参与者都没有学习Alice是否是成员of g,除非这些参与者本身是G组的成员。此类议定书在可疑的环境中是有用的,其中A(也许秘密)集团的一组成员需要互相认证并同意共同的秘密密钥,而不会揭示他们的联系局外人。在本文中,我们加强了AH-AGKA的前提定义,以便在任何协议实例的任何构成中维护安全和隐私权。我们还在RSA和GAP Diffie-Hellman假设下,在这个新的和更强的模型中构建了两种新的Ah-Agka协议。每个协议仅涉及每个玩家的两个通信回合,并且每名参数很少(例如,没有双线性地图操作)。有趣的是,这些成本与基本上的成本与基本(未经认证的)集团关键协议议定书相同。最后,我们的协议与现有结果不同,在不使用一次性证书的情况下保留其安全性和隐私性质。

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