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MRI India Journals Vol. 14 No. 2s (2025): Special Issue: ICAESRTA-2K25

Machine Learning Model for Efficient Botnet Attack Detection and Classification

Authors

  • Sandhya C. Gaikwad Department of Computer Engineering (of Aff.) VidyaPratishthan’s Kamal Nayan Bajaj Intstitute of Technology (of Aff.), Baramati,Pune Maharashtra,India
  • R. H. Ambole Department of Computer Engineering (of Aff.) VidyaPratishthan’s Kamal Nayan Bajaj Intstitute of Technology (of Aff.), Baramati,Pune Maharashtra,India

DOI:

https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1452

Keywords:

Botnet Detection Machine Learning XGBoost Decision Tree Logistic Regression UNSW-NB15 Dataset Cyber- security Feature Selection Attack Classification

Abstract

Botnets constitute a significant threat to cybersecu- rity, enabling large-scale malicious operations such as distributed denial-of-service attacks, data exfiltration, and unauthorized system access. This research presents a machine learning-based framework for the detection and classification of botnet attacks, utilizing Decision Tree, XGBoost, and Logistic Regression al- gorithms. The UNSW-NB15 dataset is employed, with distinct training and testing splits to ensure model generalization and to prevent overfitting. Feature selection techniques are applied to en- hance model performance and reduce computational complexity. Model evaluation is conducted using confusion matrices and Re- ceiver Operating Characteristic–Area Under Curve (ROC-AUC) metrics to provide a comprehensive assessment. Experimental results indicate that ensemble methods, particularly XGBoost, deliver superior performance in accurately detecting and cate- gorizing botnet traffic across various attack types. The findings highlight the effectiveness of machine learning approaches in improving the robustness and scalability of network intrusion detection systems.

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Published

2025-12-11

How to Cite

Gaikwad, S. C., & Ambole, R. H. (2025). Machine Learning Model for Efficient Botnet Attack Detection and Classification. International Journal of Recent Advances in Engineering and Technology, 14(2s), 160–166. https://doi.org/10.65521/intjournalrecadvengtech.v14i2s.1452

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