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Taming the Data in the Internet of Vehicles
Author(s) -
Shahab Tayeb,
AUTHOR_ID
Publication year - 2022
Language(s) - English
Resource type - Reports
DOI - 10.31979/mti.2022.2014
Subject(s) - normalization (sociology) , computer science , artificial neural network , artificial intelligence , machine learning , intrusion detection system , the internet , feature selection , data mining , database normalization , network packet , pattern recognition (psychology) , computer security , operating system , sociology , anthropology
As an emerging field, the Internet of Vehicles (IoV) has a myriad of security vulnerabilities that must be addressed to protect system integrity. To stay ahead of novel attacks, cybersecurity professionals are developing new software and systems using machine learning techniques. Neural network architectures improve such systems, including Intrusion Detection System (IDSs), by implementing anomaly detection, which differentiates benign data packets from malicious ones. For an IDS to best predict anomalies, the model is trained on data that is typically pre-processed through normalization and feature selection/reduction. These pre-processing techniques play an important role in training a neural network to optimize its performance. This research studies the impact of applying normalization techniques as a pre-processing step to learning, as used by the IDSs. The impacts of pre-processing techniques play an important role in training neural networks to optimize its performance. This report proposes a Deep Neural Network (DNN) model with two hidden layers for IDS architecture and compares two commonly used normalization pre-processing techniques. Our findings are evaluated using accuracy, Area Under Curve (AUC), Receiver Operator Characteristic (ROC), F-1 Score, and loss. The experimentations demonstrate that Z-Score outperforms no-normalization and the use of Min-Max normalization.

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