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Public Key Authentication and Key Agreement in IoT Devices With Minimal Airtime Consumption

机译:耗时最少的物联网设备中的公钥认证和密钥协议

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摘要

Computational complexity of public key cryptography over sensor nodes is not anymore a blocking concern in modern devices which natively (and efficiently) support elliptic curve cryptography. The problem has rather shifted toward the significant airtime consumption required to exchange multiple messages and certificates so as to perform authentication and key agreement. This letter addresses such problem by exploiting implicit certificates (elliptic curve Qu-Vanstone). We specifically propose a novel key management protocol (KMP) which suitably integrates implicit certificates with a standard elliptic curve Diffie-Hellman exchange, and performs authentication and key derivation. As confirmed by a proof-of-concept implementation and relevant experimental results, the proposed KMP guarantees maximal airtime savings (up to 86.7%) with respect to conventional approaches, robust key negotiation, fast rekeying, and efficient protection against replay attacks.
机译:传感器节点上公钥密码术的计算复杂性不再是本机(且有效地)支持椭圆曲线密码术的现代设备中的阻碍性问题。问题已经转向交换多个消息和证书以执行身份验证和密钥协商所需的大量通话时间消耗。这封信通过利用隐式证书(椭圆曲线Qu-Vanstone)解决了此类问题。我们专门提出了一种新颖的密钥管理协议(KMP),该协议将隐式证书与标准椭圆曲线Diffie-Hellman交换适当地集成在一起,并执行身份验证和密钥派生。正如概念验证实施和相关实验结果所证实的那样,与传统方法,健壮的密钥协商,快速的密钥更新和有效的重放攻击防护相比,拟议的KMP保证了最大的通话时间节省(高达86.7%)。

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