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Intelligent Trust-Based Public-Key Management for IoT by Linking Edge Devices in a Fog Architecture

机译:通过在雾架构中链接边缘设备的IOT基于基于信任的公共密钥管理

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摘要

Due to memory and processing limitations, Internet-of-Things (IoT) devices require external fog servers to perform some of their tasks. However, this offloading of tasks comes at the cost of more interactions whose security cannot be guaranteed without the authentication and key management scheme. Traditional prescriptions, such as those used for securing the Web, require referring to central agents, such as certificate authorities (CA) or online certificate status protocol (OCSP) responders, that sit in the cloud. This poses many challenges, including additional communication costs and repetitive delays which work against the low latency and energy efficiency goals of edge networking. In this article, we propose a novel semidecentralized public-key management scheme for smart IoT systems in which devices intelligently decide whether to look for the keying material locally at the edge or refer to the cloud for this purpose. The result is a security architecture that links IoT devices, fog servers, and cloud, but with minimal dependency on the latter. In the proposed solution, devices work collaboratively to deliver revocation lists and digital certificates of fog servers to each other. The decision to go for edge nodes or cloud CA/OCSP responders is made intelligently by each node upon learning its neighborhood and network statistics. The core idea is based on the Web of trust, but unlike that, whenever a material is not found locally, cloud servers are queried. Experiments show that through this intelligent approach, the cost of key management operations, e.g., delay, can be reduced by up to 50%.
机译:由于内存和处理限制,互联网的东西(物联网)设备需要外部雾服务器来执行一些任务。但是,此任务的卸载率为更高的交互成本,而无需认证和密钥管理方案就无法保证安全性。传统的处方,例如用于保护Web的那些,需要参考中央代理,例如证书颁发机构(CA)或在线证书状态协议(OCSP)响应者,坐在云中。这造成了许多挑战,包括额外的沟通成本和重复延迟,这些成本与边缘网络的低延迟和能效目标有关。在本文中,我们为智能物联网系统提出了一种新的半向下级公共关键管理计划,其中设备智能地决定是否在边缘本地寻找键控材料,或者为此目的引用云。结果是一种安全架构,可将IoT设备,雾服务器和云链接,但是对后者的依赖性最小。在所提出的解决方案中,设备协同工作,以彼此交付吊放服务器的撤销列表和数字证书。在学习其邻域和网络统计时,每个节点都会智能地制作去找边缘节点或云CA / OCSP响应器的决定。核心理念是基于信任的网络,但与此,无论何时找不到材料,都会查询云服务器。实验表明,通过这种智能方法,主要管理操作的成本,例如延迟,可以减少50%。

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