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Efficient key exchange with tight security reduction

机译:高效的密钥交换和严格的安全性降低

摘要

In this paper, we propose two authenticated key exchange (AKE) protocols, SMEN and SMEN−, which have efficient online computation and tight security proof in the extended Canetti-Krawczyk (eCK) model. SMEN takes 1.25 exponentiations in online computation, close to that (1.17 exponentiations) of the most efficient AKEs MQV and its variants HMQV and CMQV. SMEN has a security reduction as tight as that of NAXOS, which is the first AKE having a tight security reduction in the eCK model. As a comparison, MQV does not have a security proof; both HMQV and CMQV have a highly non-tight security reduction, and HMQV needs a non-standard assumption; NAXOS takes 2.17 exponentiations in online computation; NETS, a NAXOS variant, takes two online exponentiations in online computation. SMEN simultaneously achieves online efficiency and a tight security proof at a cost of 0.17 more exponentiations in offline computation and the restriction that one party is not allowed to establish a key with itself. SMEN− takes 1.29 exponentiations in online computation, but SMEN− does not use the static private key to compute the ephemeral public key (as does in SMEN, NAXOS, CMQV, and NETS), and hence reduces the risk of leaking the static private key.
机译:在本文中,我们提出了两种认证密钥交换(AKE)协议SMEN和SMEN-,它们在扩展的Canetti-Krawczyk(eCK)模型中具有有效的在线计算能力和严格的安全性证明。 SMEN在在线计算中采用1.25的幂,接近最有效的AKEs MQV及其变体HMQV和CMQV的(1.17幂)。 SMEN的安全性降低程度与NAXOS一样,后者是第一个在eCK模型中安全性程度严格降低的AKE。相比之下,MQV没有安全性证明。 HMQV和CMQV都具有高度不严格的安全性降低,并且HMQV需要非标准的假设。 NAXOS在在线计算中采用2.17的幂; NETS是NAXOS的一种变体,它在在线计算中具有两个在线指数。 SMEN同时实现了在线效率和严格的安全性证明,脱机计算的成本增加了0.17,并且限制了不允许一方自行建立密钥的限制。 SMEN−在在线计算中采用1.29的幂,但是SMEN−不使用静态私钥来计算临时公钥(如SMEN,NAXOS,CMQV和NETS那样),因此减少了泄漏静态私钥的风险。

著录项

  • 作者

    Wu Jiang; Ustaoğlu Berkant;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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