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Secure and Lightweight HMAC Mutual Authentication Protocol for Communication between IoT Devices and Fog Nodes

机译:安全和轻量级的HMAC相互认证协议,用于IOT设备和雾节点之间的通信

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The transition from regular Internet to “Internet of Things” (IoT) is leading to multiple changes in the standard ways of communication. Today, the cloud computing paradigm faces many challenges like low capacity, high latency and network failure. It can show its limits in a context of connected objects for example, latency-sensitive applications will need to use a large number of nodes to meet the performance level. However the performance of such cloud services was limited by the performance loads offered by the respective data centers servers hosting these cloud services. In addition, these devices generate data in a large number of formats using various protocols, making acquisition and processing in real time difficult. That are critical for some IoT applications. For all these reasons, the world has seen the emergence of a new competing concept or rather a complement to cloud computing, which is more adapted to the Internet of Things: it is the Fog Computing. On the other hand, the heterogeneous nature of IoT communications and the imbalanced resource capabilities between different entities make it challenging to provide end to end secured connections. Nevertheless, a direct use of existing standard key establishment protocols to initiate connections between two IoT entities does not suit resource-constrained devices and is in most cases impractical, as the use of expensive cryptographic primitives leaves aside a whole class of resourceconstrained devices. Unlike Internet servers, most IoT components are characterized by low power and computing capacity, and are therefore unable to support complex security systems. In this article, we present the architecture, characteristic of fog computing, the key differences between the Fog model and Cloud Computing, the role-played for the internet of things and reviews a wide range of applications of fog computing. Then, we present also an HMAC mutual authentication protocol for Securing IoT-enabled Applications at the Fog Platform.
机译:从常规互联网到“东西互联网”的过渡导致标准通信方式的多种变化。今天,云计算范式面临许多挑战,如低容量,高延迟和网络故障。它可以在连接对象的上下文中显示其限制,例如,延迟敏感的应用程序需要使用大量节点来满足性能级别。然而,这种云服务的性能受到这些云服务的各个数据中心服务器提供的性能负载的限制。此外,这些设备使用各种协议以大量格式生成数据,从而实时获取和处理困难。这对于某些物联网应用来说至关重要。出于所有这些原因,世界已经看到了新的竞争概念的出现,而不是对云计算的补充,这更适应事物互联网:它是雾计算。另一方面,不同实体之间的IOT通信的异构性质和不同实体之间的不平衡资源能力使其具有挑战性地提供端到端安全连接。尽管如此,直接使用现有的标准密钥建立协议来启动两个物业实体之间的连接不适合资源受限的设备,并且在大多数情况下是不切实际的,因为使用昂贵的加密基元留下一整类的资源安全设备。与互联网服务器不同,大多数IOT组件的特征在于低功耗和计算能力,因此无法支持复杂的安全系统。在本文中,我们介绍了雾计算的架构,特征,雾模型与云计算之间的关键差异,为事物互联网发挥作用,并审查了广泛的雾计算应用。然后,我们还提供了一种用于在FOG平台上保护启用IOT的应用程序的HMAC相互认证协议。

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