Proxy-based end-to-end key establishment protocol for the Internet of Things

P. Porambage, An Braeken, Pardeep Kumar, A. Gurtov, M. Ylianttila
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引用次数: 26

Abstract

The Internet of Things (IoT) drives the world towards an always connected paradigm by interconnecting wide ranges of network devices irrespective of their resource capabilities and local networks. This would inevitably enhance the requirements of constructing dynamic and secure end-to-end (E2E)connections among the heterogenous network devices with imbalanced resource profiles and less or no previous knowledge about each other. The device constraints and the dynamic link creations make it challenging to use pre-shared keys for every secure E2E communication scenario in IoT. We propose a proxy-based key establishment protocol for the IoT, which enables any two unknown high resource constrained devices to initiate secure E2E communication. The high constrained devices should be legitimate and maintain secured connections with the neighbouring less constrained devices in the local networks, in which they are deployed. The less constrained devices are performing as the proxies and collaboratively advocate the expensive cryptographic operations during the session key computation. Finally, we demonstrate the applicability of our solution in constrained IoT devices by providing performance and security analysis.
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基于代理的物联网端到端密钥建立协议
物联网(IoT)通过连接各种网络设备,无论其资源能力和本地网络如何,都将世界推向始终连接的范式。这将不可避免地提高在异构网络设备之间构建动态和安全的端到端(E2E)连接的需求,这些设备具有不平衡的资源配置,并且彼此之前的了解很少或没有。设备约束和动态链接创建使得在物联网中的每个安全端到端通信场景中使用预共享密钥具有挑战性。我们提出了一种基于代理的物联网密钥建立协议,该协议允许任意两个未知的高资源约束设备启动安全的端到端通信。高约束的设备应该是合法的,并且在部署它们的本地网络中与邻近的低约束设备保持安全连接。约束较少的设备作为代理执行,并在会话密钥计算期间协同倡导昂贵的加密操作。最后,我们通过提供性能和安全分析来证明我们的解决方案在受限物联网设备中的适用性。
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