Control of a Virtual Hand Using a Brain-Computer Interface System

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Details

An Asynchronous BCI was designed using non-cue based data collected from several participants in two separate sessions with different protocols. Several different features were extracted and evaluated using the DBI and the best of these, the joint time- frequency (JTF) feature, was chosen for detecting onset and classifying mental tasks. For onset detection, two different methods were employed and compared on the basis of classification performance obtained from confusion matrices, repeatability and ease of application. Different classifiers were tested for onset detection of which Linear Discriminant Analysis (LDA) classifier showed better results. The classified onset using JTF features and LDA classifier was then used to select the active period data in both sessions, which was then sent to the mental task classifier. Mental Task classification was done using Neural Networks, Support Vector Machines and LDA. The performance of the mental task classifier was also evaluated using confusion matrices. A virtual hand was developed graphically in MATLAB and was programmed to move in 6 different directions according to the classified outputs.

Autorentext

The author was born in Pakistan. She did her graduate study in Mechatronics Engineering from National University of Science and Technology(NUST), Pakistan and her Postgraduate study in Robotics from UK. Currently she is a Lecturer at NUST.

Weitere Informationen

  • Allgemeine Informationen
    • GTIN 09783844304411
    • Genre Elektrotechnik
    • Sprache Englisch
    • Anzahl Seiten 104
    • Größe H220mm x B150mm x T7mm
    • Jahr 2011
    • EAN 9783844304411
    • Format Kartonierter Einband
    • ISBN 384430441X
    • Veröffentlichung 01.02.2011
    • Titel Control of a Virtual Hand Using a Brain-Computer Interface System
    • Autor Nida Aziz
    • Untertitel Finding Suitable Features and Classifiers for an Asynchronous BCI System in the Offline State to Control a Virtual Hand in 6-DOF
    • Gewicht 173g
    • Herausgeber LAP LAMBERT Academic Publishing

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