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Intelligent DDOS Attack Detection and Mitigation Using Machine Learning Techniques

Aug 2026 · International Journal of Computer Trends and Technology · 0 citations

TL;DR

An intelligent DDoS detection and mitigation framework that combines classical Machine Learning (ML) classifiers with Deep Learning (DL) architectures to achieve high-fidelity, low-latency attack identification across heterogeneous network topologies is presented.

Abstract

Distributed Denial-of-Service (DDoS) attacks remain among the most disruptive threats to modern network infrastructure, with adversaries continually adapting their strategies to overwhelm cloud platforms, Internet-of-Things (IoT) deployments, and Software-Defined Network (SDN) environments. Traditional signature-based intrusion detection systems exhibit inherent inflexibility against novel attack vectors, motivating a shift toward intelligent, data-driven defense mechanisms. This paper presents an intelligent DDoS detection and mitigation framework that combines classical Machine Learning (ML) classifiers with Deep Learning (DL) architectures to achieve high-fidelity, low-latency attack identification across heterogeneous network topologies. Evaluated on the CICDDoS2019, NSL-KDD, and UNSW-NB15 benchmark datasets, the proposed hybrid framework incorporating XGBoost and a Bidirectional LSTM model achieves a classification accuracy of 99.31%, a precision of 99.18%, a recall of 99.27%, and an F1-score of 99.22%, outperforming standalone classifiers while sustaining sub-millisecond detection latency under realistic traffic loads. SDN-assisted rule insertion further reduces the mean mitigation response time to 8.4 ms. The results affirm the viability of deploying intelligent, explainable ML-based defense pipelines in production-grade network environments.

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