Trusted Model Based on Multi-dimensional Attributes in Edge Computing

Jinhui Zhu, Liang Chen, Xiantong Liu, Lincong Zhao, Peipei Shen, Jinghan Chen
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Abstract

As a supplement to the cloud computing model, the edge computing model can use edge servers and edge devices to coordinate information processing on the edge of the network to help Internet of Thing (IoT) data storage, transmission, and computing tasks. In view of the complex and changeable situation of edge computing IoT scenarios, this paper proposes a multi-dimensional trust evaluation factor selection scheme. Improve the traditional trusted modeling method based on direct/indirect trust, introduce multi-dimensional trusted decision attributes and rely on the collaboration of edge servers and edge device nodes to infer and quantify the trusted relationship between nodes, and combine the information entropy theory to smoothly weight the calculation results of multi-dimensional decision attributes. Improving the current situation where the traditional trusted assessment scheme's dynamic adaptability to the environment and the lack of reliability of trusted assessment are relatively lacking. Simulation experiments show that the edge computing IoT multi-dimensional trust evaluation model proposed in this paper has better performance than the trusted model in related literature.
边缘计算中基于多维属性的可信模型
边缘计算模型是对云计算模型的补充,可以利用边缘服务器和边缘设备协调网络边缘的信息处理,帮助完成物联网数据的存储、传输和计算任务。针对边缘计算物联网场景复杂多变的情况,本文提出了一种多维度信任评估因子选择方案。改进传统基于直接/间接信任的信任建模方法,引入多维可信决策属性,依靠边缘服务器和边缘设备节点之间的协作来推断和量化节点之间的信任关系,并结合信息熵理论对多维决策属性的计算结果进行平滑加权。改善了传统可信评估方案对环境的动态适应性和可信评估可靠性相对不足的现状。仿真实验表明,本文提出的边缘计算物联网多维信任评估模型比相关文献的信任模型具有更好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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