物联网资源管理机制分析:雾和边缘雾计算背景下的相互认证性能

Gaye Abdourahime, Ousmane Ndiaye
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引用次数: 0

摘要

随着物联网的发展,互联网正经历着前所未有的扩张。在物联网诞生之初,就像任何革命一样,它的目标非常有限。其主要目标是减少人工输入数据的工作量,以便对后者进行存储和自动处理。此外,对象会产生大量数据,而这些数据本身无法存储或处理,因此需要外部支持。这就是云计算如何解决这个问题,使物联网取得成功。这种技术保证了数据的存储、可用性、处理等,它与后者的融合被称为“物联网云”(Cloud of Things)。产生的数据不仅应该存储,而且应该处理,以获得知识,决策。我们的工作目标是分析物联网设备的相互认证管理模型,以优化资源,试图在资源可用性面前提供解决方案。为了开展这项工作,我们分析了物联网的应用领域和挑战。然后,我们研究了物联网安全威胁。本文最后研究了基于无认证认证机制、椭圆曲线加密认证、雾计算背景下的互认证的物联网互认证管理模型的研究与分析机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of Mechanisms for Resource Management in IoT: Performance of Mutual Authentication in the Context of Fog and EDGE-Fog Computing
The Internet is now experiencing an unprecedented expansion with the development of connected objects. At its inception the IoT, like any revolution, its objectives were quite limited. Its main objective was to reduce the effort of human data entry in order to allow the storage and automatic processing of the latter. Moreover, objects generate a lot of data that they cannot store or process by themselves, hence the need for external support. This is how Cloud Computing comes to answer this problem, making the success of IoT. This technology guarantees the storage, availability, processing, etc. of data, its integration into the latter is known as "Cloud of Things" CoT. The data generated should not only be stored, but rather processed in order to derive knowledge, decision making. The objective of our work is to analyze mutual authentication management models of IoT devices to optimize resources trying to provide solutions in the face of resource availability. To carry out this work, we analyzed the application areas and the challenges of IoT. Then, we studied IoT security threats. Our work ends with a study and an analysis mechanism of mutual authentication management models of IoT based on uncertificated Authentication mechanisms, Elliptic curve cryptography authentication, Mutual Authentication in the context of Fog Computing.
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