When Blockchain Makes Ephemeral Keys Authentic: A Novel Key Agreement Mechanism in the IoT World

Pietro Tedeschi, G. Piro, G. Boggia
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引用次数: 3

Abstract

Conventional Key Management Protocols establish secure communication channels by using asymmetric cryptography based on “fixed” public keys. In the Internet of Things context, it is preferable to have a good level of freshness of the cryptographic material. But efficient solutions leveraging “ephemeral” public keys are not available yet. The work presented herein solves this problem by conceiving a novel key agreement methodology integrating the Blockchain technology. Specifically, Blockchain is used to store X.509 certificates related to the initial fixed public keys of devices, to publish new ephemeral public keys, and to help the verification of the authenticity of ephemeral public keys without sending signatures and additional X.509 certificates. A preliminary comparison against Transport Layer Security protocol and other customized key agreement schema presented in the literature demonstrates that the proposed approach registers low communication overhead, limited energy consumptions, and acceptable communication latencies while ensuring the lowest memory footprint.
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当区块链使临时密钥可信时:物联网世界中的一种新型密钥协议机制
传统的密钥管理协议采用基于“固定”公钥的非对称加密技术建立安全的通信通道。在物联网环境中,最好是具有良好的加密材料的新鲜度。但是利用“短暂的”公钥的有效解决方案还不可用。本文提出的工作通过构思一种集成区块链技术的新型密钥协议方法来解决这一问题。具体来说,区块链用于存储与设备初始固定公钥相关的X.509证书,发布新的临时公钥,并帮助验证临时公钥的真实性,而无需发送签名和额外的X.509证书。与文献中提出的传输层安全协议和其他自定义密钥协议模式的初步比较表明,所提出的方法具有较低的通信开销、有限的能耗和可接受的通信延迟,同时确保最低的内存占用。
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