TrustBlock: An adaptive trust evaluation of SDN network nodes based on double-layer blockchain

计算机科学 计算机网络 节点(物理) 网络数据包 可控性 认证(法律) 计算机安全 网络层 可靠性(半导体) 图层(电子) 应用层 分布式计算 软件 化学 数学 结构工程 有机化学 应用数学 工程类 功率(物理) 物理 量子力学 程序设计语言
作者
Bo Zhao,Yifan Liu,Xiang Li,Jiayue Li,Jianwen Zou
出处
期刊:PLOS ONE [Public Library of Science]
卷期号:15 (3): e0228844-e0228844 被引量:22
标识
DOI:10.1371/journal.pone.0228844
摘要

The data layer devices in the Software Defined Network (SDN) play an important role in packet forwarding. However, whether the forwarding task can be efficiently completed by the node has not attracted enough attention. A method called TrustBlock is proposed in this paper, which introduces trust as a security attribute in SDN routing planning. Besides, in order to enhance the integrity and controllability of trust evaluation, the double-layer blockchain architecture is established. In the first layer, the behavior data of the node is recorded, and then the trust calculation is performed in the second layer. In the evaluation model, nodes’ trust is calculated from three aspects: direct trust, indirect trust and historical trust. Firstly, from the perspective of security, blockchain is used to achieve identity authentication of nodes, after that, from the perspective of reliability, the forwarding status is used to calculate the trust value. Secondly, consensus algorithm is used to filter malicious recommendation trust value and prevent colluding attacks. Finally, the adaptive historical trust weight is designed to prevent the periodic attack. In this paper, the entropy method is used to determine the weight of each evaluation attribute, which can avoid the problem that the subjective judgment method is not adaptable to the weight setting. Simulation results show that the detection rate of the TrustBlock is up to 98.89%, which means this model can effectively identify the abnormal nodes in SDN. Moreover, it is attractive in terms of integrity and controllability.

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