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Optimized deep learning‐based intrusion detection for wireless sensor networks

Gowdhaman Vembu, Dhanapal Ramasamy

2022International Journal of Communication Systems22 citationsDOI

Abstract

Summary The technological innovations and wide use of Wireless Sensor Network (WSN) applications need to handle diverse data. These huge data possess network security issues as intrusions that cannot be neglected or ignored. An effective strategy to counteract security issues in WSN can be achieved through the Intrusion Detection System (IDS). IDS ensures network integrity, availability, and confidentiality by detecting different attacks. Regardless of efforts by various researchers, the domain is still open to obtain an IDS with improved detection accuracy with minimum false alarms to detect intrusions. Machine learning models are deployed as IDS, but their potential solutions need to be improved in terms of detection accuracy. The neural network performance depends on feature selection, and hence, it is essential to bring an efficient feature selection model for better performance. An optimized deep learning model has been presented to detect different types of attacks in WSN. Instead of the conventional parameter selection procedure for Convolutional Neural Network (CNN) architecture, a nature‐inspired whale optimization algorithm is included to optimize the CNN parameters such as kernel size, feature map count, padding, and pooling type. These optimized features greatly improved the intrusion detection accuracy compared to Deep Neural network (DNN), Random Forest (RF), and Decision Tree (DT) models.

Topics & Concepts

Computer scienceIntrusion detection systemFeature selectionConvolutional neural networkArtificial intelligenceDeep learningMachine learningPoolingArtificial neural networkData miningFeature (linguistics)Network securityRandom forestComputer networkPhilosophyLinguisticsNetwork Security and Intrusion DetectionAnomaly Detection Techniques and ApplicationsSecurity in Wireless Sensor Networks
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