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CorrAUC: A Malicious Bot-IoT Traffic Detection Method in IoT Network Using Machine-Learning Techniques

Muhammad ShafiqDepartment of Cyberspace Institute of Advanced Technology, Guangzhou University, Guangzhou, ChinaZhihong TianDepartment of Cyberspace Institute of Advanced Technology, Guangzhou University, Guangzhou, ChinaAli Kashif BashirDepartment of Computing and Mathematics, Manchester Metropolitan University, Manchester, U.KXiaojiang DuDepartment of Computer and Information Sciences, Temple University, Philadelphia, PA, USAMohsen GuizaniDepartment of Computer Science and Engineering, Qatar University, Doha, Qatar
2020en
ABI

Аннотация

Identification of anomaly and malicious traffic in the Internet-of-Things (IoT) network is essential for the IoT security to keep eyes and block unwanted traffic flows in the IoT network. For this purpose, numerous machine-learning (ML) technique models are presented by many researchers to block malicious traffic flows in the IoT network. However, due to the inappropriate feature selection, several ML models prone misclassify mostly malicious traffic flows. Nevertheless, the significant problem still needs to be studied more in-depth that is how to select effective features for accurate malicious traffic detection in the IoT network. To address the problem, a new framework model is proposed. First, a novel feature selection metric approach named CorrAUC is proposed, and then based on CorrAUC, a new feature selection algorithm named CorrAUC is developed and designed, which is based on the wrapper technique to filter the features accurately and select effective features for the selected ML algorithm by using the area under the curve (AUC) metric. Then, we applied the integrated TOPSIS and Shannon entropy based on a bijective soft set to validate selected features for malicious traffic identification in the IoT network. We evaluate our proposed approach by using the Bot-IoT data set and four different ML algorithms. The experimental results analysis showed that our proposed method is efficient and can achieve >96% results on average.

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