论文标题

物联网中的快速可扩展的身份验证方案,用于智能生活

A Fast and Scalable Authentication Scheme in IoT for Smart Living

论文作者

Li, Jianhua, Jin, Jiong, Lyu, Lingjuan, Yuan, Dong, Yang, Yingying, Gao, Longxiang, Shen, Chao

论文摘要

许多资源有限的智能对象(SOS)(例如传感器和执行器)已广泛部署在智能环境中,为入侵者打开了新的攻击表面。严重的安全漏洞不鼓励在智能生活中采用物联网。在本文中,我们利用雾计算和微服务将证书授权(CA)功能推向数据源的距离。通过其中,我们可以最大程度地减少攻击表面和身份验证延迟,并在认证大量资源有限的设备方面产生快速可扩展的方案。然后,我们设计了轻巧的协议来实施该方案,在此方面,高度的安全性和低计算工作负载(在客户端上没有双线性配对要求)。评估证明了我们计划在处理大量节点的身份验证和注册方面的效率和有效性,同时保护他们免受对智能生活的各种威胁。最后,我们展示了计算智能运动朝着处理复杂服务的数据源的成功。

Numerous resource-limited smart objects (SOs) such as sensors and actuators have been widely deployed in smart environments, opening new attack surfaces to intruders. The severe security flaw discourages the adoption of the Internet of things in smart living. In this paper, we leverage fog computing and microservice to push certificate authority (CA) functions to the proximity of data sources. Through which, we can minimize attack surfaces and authentication latency, and result in a fast and scalable scheme in authenticating a large volume of resource-limited devices. Then, we design lightweight protocols to implement the scheme, where both a high level of security and low computation workloads on SO (no bilinear pairing requirement on the client-side) is accomplished. Evaluations demonstrate the efficiency and effectiveness of our scheme in handling authentication and registration for a large number of nodes, meanwhile protecting them against various threats to smart living. Finally, we showcase the success of computing intelligence movement towards data sources in handling complicated services.

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