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PANATIKI: A Network Access Control Implementation Based on PANA for IoT Devices

机译:PANATIKI:基于PANA的IoT设备的网络访问控制实现

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摘要

Internet of Things (IoT) networks are the pillar of recent novel scenarios, such as smart cities or e-healthcare applications. Among other challenges, these networks cover the deployment and interaction of small devices with constrained capabilities and Internet protocol (IP)-based networking connectivity. These constrained devices usually require connection to the Internet to exchange information (e.g., management or sensing data) or access network services. However, only authenticated and authorized devices can, in general, establish this connection. The so-called authentication, authorization and accounting (AAA) services are in charge of performing these tasks on the Internet. Thus, it is necessary to deploy protocols that allow constrained devices to verify their credentials against AAA infrastructures. The Protocol for Carrying Authentication for Network Access (PANA) has been standardized by the Internet engineering task force (IETF) to carry the Extensible Authentication Protocol (EAP), which provides flexible authentication upon the presence of AAA. To the best of our knowledge, this paper is the first deep study of the feasibility of EAP/PANA for network access control in constrained devices. We provide light-weight versions and implementations of these protocols to fit them into constrained devices. These versions have been designed to reduce the impact in standard specifications. The goal of this work is two-fold: (1) to demonstrate the feasibility of EAP/PANA in IoT devices; (2) to provide the scientific community with the first light-weight interoperable implementation of EAP/PANA for constrained devices in the Contiki operating system (Contiki OS), called PANATIKI. The paper also shows a testbed, simulations and experimental results obtained from real and simulated constrained devices.
机译:物联网(IoT)网络是诸如智能城市或电子医疗保健应用等新型应用场景的支柱。这些网络面临的其他挑战包括具有受限功能的小型设备的部署和交互以及基于Internet协议(IP)的网络连接。这些受约束的设备通常需要连接到Internet以交换信息(例如,管理或感测数据)或访问网络服务。但是,通常只有经过身份验证和授权的设备才能建立此连接。所谓的认证,授权和计费(AAA)服务负责在Internet上执行这些任务。因此,有必要部署允许受约束的设备针对AAA基础结构验证其凭据的协议。 Internet工程任务组(IETF)已对承载网络访问身份验证的协议(PANA)进行了标准化,以承载可扩展身份验证协议(EAP),该协议可在AAA出现时提供灵活的身份验证。据我们所知,本文是对EAP / PANA在受限设备中进行网络访问控制的可行性的首次深入研究。我们提供这些协议的轻量级版本和实现,以使其适合受限设备。这些版本旨在减少对标准规格的影响。这项工作的目标有两个:(1)演示EAP / PANA在物联网设备中的可行性; (2)为Contiki操作系统(Contiki OS)中的受约束设备提供第一个轻量级可互操作的EAP / PANA实现,称为PANATIKI。本文还显示了从真实和模拟约束设备获得的测试平台,模拟和实验结果。

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