4.0 Article

Evaluation of Machine Learning Algorithms for Classification of EEG Signals

Journal

TECHNOLOGIES
Volume 10, Issue 4, Pages -

Publisher

MDPI
DOI: 10.3390/technologies10040079

Keywords

EEG; BCI; feature extraction; artificial intelligence; machine learning; deep learning; artificial neural network; mental commands; signal classification; pattern recognition

Funding

  1. Universidad Autonoma de Baja California (UABC) [679]

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This study presented a signal processing analysis of EEG signals for motor movement classification using various feature extraction techniques and machine learning algorithms. The Medium-ANN model achieved the best performance in classifying motor movements, suggesting the potential applicability of the approach in scenarios like robotic prostheses and embedded systems.
In brain-computer interfaces (BCIs), it is crucial to process brain signals to improve the accuracy of the classification of motor movements. Machine learning (ML) algorithms such as artificial neural networks (ANNs), linear discriminant analysis (LDA), decision tree (D.T.), K-nearest neighbor (KNN), naive Bayes (N.B.), and support vector machine (SVM) have made significant progress in classification issues. This paper aims to present a signal processing analysis of electroencephalographic (EEG) signals among different feature extraction techniques to train selected classification algorithms to classify signals related to motor movements. The motor movements considered are related to the left hand, right hand, both fists, feet, and relaxation, making this a multiclass problem. In this study, nine ML algorithms were trained with a dataset created by the feature extraction of EEG signals.The EEG signals of 30 Physionet subjects were used to create a dataset related to movement. We used electrodes C3, C1, CZ, C2, and C4 according to the standard 10-10 placement. Then, we extracted the epochs of the EEG signals and applied tone, amplitude levels, and statistical techniques to obtain the set of features. LabVIEW (TM) 2015 version custom applications were used for reading the EEG signals; for channel selection, noise filtering, band selection, and feature extraction operations; and for creating the dataset. MATLAB 2021a was used for training, testing, and evaluating the performance metrics of the ML algorithms. In this study, the model of Medium-ANN achieved the best performance, with an AUC average of 0.9998, Cohen's Kappa coefficient of 0.9552, a Matthews correlation coefficient of 0.9819, and a loss of 0.0147. These findings suggest the applicability of our approach to different scenarios, such as implementing robotic prostheses, where the use of superficial features is an acceptable option when resources are limited, as in embedded systems or edge computing devices.

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