Azar AT, Balas VE, Olariu T (2014) Classification Of EEG-Based Brain-Computer Interfaces. Advanced Intelligent Computational Technologies and Decision Support Systems, Studies in Computational Intelligence Volume 486, 2014, pp 97-106. DOI: 10.1007/978-3-319-00467-9_9
Studies in Computational Intelligence • 2014
معلومات البحث
المؤلفون
Not Available
الكلمات المفتاحية
Not Available
المجلة العلمية
Studies in Computational Intelligence
الناشر
Springer
المجلد
486
العدد
Not Available
الصفحات
97-106
publication.type
International
رابط البحث
Open Link
المواد المرفقة
Not Available
الملخص
This chapter demonstrates the development of a brain computer interface (BCI) decision support system for controlling the movement of a wheelchair for neurologically disabled patients using their Electroencephalography (EEG). The subject was able to imagine his/her hand movements during EEG experiment which made EEG oscillations in the signal that could be classified by BCI. The BCI will translate the patient’s thoughts into simple wheelchair commands such as “go” and “stop”. EEG signals are recorded using 59 scalp electrodes. The acquired signals are artifacts contaminated. These artifacts were removed using blind source separation (BSS) by independent component analysis (ICA) to get artifact-free EEG signal from which certain features are extracted by applying discrete wavelet transformation (DWT). The extracted features were reduced in dimensionality using principal component analysis (PCA). The reduced features were fed to neural networks classifier yielding classification accuracy greater than 95 %.
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