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Explainable Machine Learning for Cyberattack Identification from Traffic Flows

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arxiv 2505.01488 v1 pith:4VLGNIUC submitted 2025-05-02 cs.LG cs.CR

Explainable Machine Learning for Cyberattack Identification from Traffic Flows

classification cs.LG cs.CR
keywords trafficdetectioncyberattacksdataexplainablelearning-basedmachinemodel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The increasing automation of traffic management systems has made them prime targets for cyberattacks, disrupting urban mobility and public safety. Traditional network-layer defenses are often inaccessible to transportation agencies, necessitating a machine learning-based approach that relies solely on traffic flow data. In this study, we simulate cyberattacks in a semi-realistic environment, using a virtualized traffic network to analyze disruption patterns. We develop a deep learning-based anomaly detection system, demonstrating that Longest Stop Duration and Total Jam Distance are key indicators of compromised signals. To enhance interpretability, we apply Explainable AI (XAI) techniques, identifying critical decision factors and diagnosing misclassification errors. Our analysis reveals two primary challenges: transitional data inconsistencies, where mislabeled recovery-phase traffic misleads the model, and model limitations, where stealth attacks in low-traffic conditions evade detection. This work enhances AI-driven traffic security, improving both detection accuracy and trustworthiness in smart transportation systems.

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