计算机科学
服务拒绝攻击
计算机安全
软件部署
背景(考古学)
保安服务
应用层DDoS攻击
网络安全
计算机网络
互联网
信息安全
生物
操作系统
万维网
古生物学
作者
Hajar Moudoud,Lyes Khoukhi,Soumaya Cherkaoui
出处
期刊:IEEE Network
[Institute of Electrical and Electronics Engineers]
日期:2021-03-01
卷期号:35 (2): 194-201
被引量:44
标识
DOI:10.1109/mnet.011.2000449
摘要
Security in fifth generation (5G) networks has become one of the prime concerns in the telecommunication industry. 5G security challenges come from the fact that 5G networks involve different stakeholders using different security requirements and measures. Deficiencies in security management between these stakeholders can lead to security attacks. Therefore, security solutions should be conceived for the safe deployment of different 5G verticals (e.g., industry 4.0, Internet of Things (IoT), and so on). The interdependencies among 5G and fully connected systems, such as IoT, entail some standard security requirements, namely integrity, availability, and confidentiality. In this article, we propose a hierarchical architecture for securing 5G enabled IoT networks, and a security model for the prediction and detection of False Data Injection Attacks (FDIA) and Distributed Denial of Service attacks (DDoS). The proposed security model is based on a Markov stochastic process, which is used to observe the behavior of each network device, and employ a range-based behavior sifting policy. Simulation results demonstrate the effectiveness of the proposed architecture and model in detecting and predicting FDIA and DDoS attacks in the context of 5G enabled IoT.
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