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Secure Authentication and Credential Establishment in Narrowband IoT and 5G

机译:窄带物联网和5G中的安全身份验证和凭据建立

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摘要

Security is critical in the deployment and maintenance of novel IoT and 5G networks. The process of bootstrapping is required to establish a secure data exchange between IoT devices and data-driven platforms. It entails, among other steps, authentication, authorization, and credential management. Nevertheless, there are few efforts dedicated to providing service access authentication in the area of constrained IoT devices connected to recent wireless networks such as narrowband IoT (NB-IoT) and 5G. Therefore, this paper presents the adaptation of bootstrapping protocols to be compliant with the 3GPP specifications in order to enable the 5G feature of secondary authentication for constrained IoT devices. To allow the secondary authentication and key establishment in NB-IoT and 4G/5G environments, we have adapted two Extensible Authentication Protocol (EAP) lower layers, i.e., PANATIKI and LO-CoAP-EAP. In fact, this approach presents the evaluation of both aforementioned EAP lower layers, showing the contrast between a current EAP lower layer standard, i.e., PANA, and one specifically designed with the constraints of IoT, thus providing high flexibility and scalability in the bootstrapping process in 5G networks. The proposed solution is evaluated to prove its efficiency and feasibility, being one of the first efforts to support secure service authentication and key establishment for constrained IoT devices in 5G environments.
机译:在新型物联网和5G网络的部署和维护中,安全性至关重要。要在IoT设备和数据驱动平台之间建立安全的数据交换,需要进行引导过程。除其他步骤外,它还包括身份验证,授权和凭据管理。尽管如此,在连接到最近的无线网络(如窄带物联网(NB-IoT)和5G)的受限物联网设备领域,很少致力于提供服务访问身份验证。因此,本文介绍了自举协议的适应性,以符合3GPP规范,以便为受限的IoT设备启用辅助身份验证的5G功能。为了允许在NB-IoT和4G / 5G环境中进行辅助身份验证和密钥建立,我们调整了两个可扩展身份验证协议(EAP)的较低层,即PANATIKI和LO-CoAP-EAP。实际上,这种方法对上述两个EAP较低层进行了评估,显示了当前EAP较低层标准(即PANA)与专门为IoT限制而设计的标准之间的对比,从而在引导过程中提供了高度的灵活性和可扩展性在5G网络中。对提出的解决方案进行了评估,以证明其效率和可行性,这是在5G环境中支持受限IoT设备的安全服务认证和密钥建立的首批努力之一。

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