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5G and Beyond: Channel Classification Enhancement Using VIF-Driven Preprocessing and Machine Learning

Amira I. Zaki, Ahmed Métwalli, Moustafa H. Aly, Waleed K. Badawi

2023Electronics12 citationsDOIOpen Access PDF

Abstract

The classification of wireless communication channel scenarios is vital for modern wireless technologies. Efficient data preprocessing for identification, especially starting from 5G and beyond, where multiple scenario transitions occur, is crucial. Machine Learning (ML) is employed for scenario identification. Moreover, accurate ML classification is required to enhance the decision-making process in each communication layer. The proposed model in this study utilizes an enhanced preprocessing phase. The proposed model proves that adding the variance inflation factor (VIF) elimination layer has a significant effect in eliminating the residual noise after regularization. By evaluating the VIF, the high multi-collinear features are removed after adding a regularization penalty. Consequently, the total explained variance (TEV) was enhanced by 5% and reached 76%. Thus, the classification accuracy of the identification processes of different rural and urban scenarios was increased by 3%, on average, compared with previous work for each algorithm: Random Forest (RF), K-Nearest Neighbor (KNN), Support Vector Machine (SVM), and Gaussian Mixture model (GMM).

Topics & Concepts

PreprocessorComputer scienceSupport vector machineData pre-processingWirelessArtificial intelligenceRandom forestRegularization (linguistics)k-nearest neighbors algorithmMixture modelMachine learningChannel (broadcasting)Data miningTelecommunicationsWireless Signal Modulation ClassificationMillimeter-Wave Propagation and ModelingIndoor and Outdoor Localization Technologies
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