Work place: Department of computer science, Aligarh Muslim University, Aligarh, Uttar Pradesh, 202002, India
E-mail: walishazra@gmail.com
Website:
Research Interests:
Biography
Shazra Wali is a Research Scholar in the Department of Computer Science at Aligarh Muslim University, Aligarh, India. She specializes in network security, machine learning, and deep learning applications in cybersecurity. Her research interests focus on adversarial robustness of AI-driven intrusion detection systems, machine learning-based security mechanisms, and the development of defensive measures against adversarial attacks. She has contributed to data curation, preprocessing, and software implementation of critical research projects involving network traffic analysis and adversarial attack generation using advanced machine learning frameworks. Her work emphasizes understanding vulnerabilities in AI-based network security systems and developing robust solutions to enhance the reliability of intrusion detection systems against evolving cyber threats.
By Aasim Zafar Shazra Wali Sheikh Burhan ul Haque
DOI: https://doi.org/10.5815/ijitcs.2026.04.11, Pub. Date: 8 Aug. 2026
Network Intrusion Detection Systems (NIDS) play a vital role in modern cybersecurity by leveraging artificial intelligence (AI) in particular deep learning (DL) and machine learning (ML) to detect and mitigate malicious activities. However, these AI-driven systems are highly vulnerable to adversarial attacks, where small, imperceptible perturbations in input data can deceive models and significantly reduce detection accuracy. This raises critical concerns about the security and reliability of intrusion detection, especially in real-world scenarios where attackers exploit adversarial transferability to bypass defenses. This research investigates the threat posed by black-box adversarial attacks via surrogate models, focusing on the ability of adversarial examples to transfer across different architectures. This study simulates real-world adversarial threats, demonstrating how attacks crafted on one model can effectively deceive another, compromising NIDS security. A comparative study is conducted on two widely used AI models: an Artificial Neural Network (ANN) and a Convolutional Neural Network (CNN), both trained on the CICIDS 2019 dataset. The study evaluates the robustness of these models against two gradient-based adversarial attack methods, Fast Gradient Sign Method (FGSM) and Projected Gradient Descent (PGD), to determine their susceptibility under black box adversarial conditions. Experimental results indicate that CNN-based NIDS are more vulnerable to adversarial attacks than ANN-based models, with adversarial examples successfully transferring across architectures. These findings highlight the critical risks associated with adversarial transferability, underscoring the need for enhanced security measures to strengthen AI-driven intrusion detection systems against evolving cyber threats.
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