DocumentCode :
680538
Title :
Design of Brain-computer interface platform for semi real-time commanding electrical wheelchair simulator movement
Author :
Kaysa, W. Affan ; Suprijanto ; Widyotriatmo, Augie
Author_Institution :
Eng. Phys. Program, Inst. Teknol. Bandung, Bandung, Indonesia
fYear :
2013
fDate :
28-30 Aug. 2013
Firstpage :
39
Lastpage :
44
Abstract :
Brain Computer Interface (BCI) research has developed intensively during past years, especially in the assistive technology development for disabled people, e.g. electric wheelchair. This paper will propose our design of the BCI platform for commanding the electric wheelchair simulator. A wireless EEG device is used because of the need for mobile, comfortable, and user-friendly BCI platform. This paper will cover the design process to build the BCI platform prototype, and evaluation about the result achieved. Our BCI platform consists of Emotiv EPOC wireless EEG, and a computer for EEG acquisition, noise filtering, feature extraction, feature classification, and gives control command to wheelchair simulator that is connected via USB. Power spectral density is used as feature extraction of μ rhythm and artificial neural network with multi layer perceptron is used for classifying the idle and movement condition and for classifying between right hand and left hand movement. The first prototype of our BCI system has an interchangeable classification database that allows drastic modification of the system input, output, user recognition, and even the classification method.
Keywords :
brain-computer interfaces; digital simulation; electric vehicles; electroencephalography; feature extraction; medical signal processing; multilayer perceptrons; wheelchairs; μ rhythm; EEG acquisition; Emotiv EPOC wireless EEG; artificial neural network; brain-computer interface platform; classification method; disabled people; feature classification; feature extraction; interchangeable classification database; multilayer perceptron; noise filtering; power spectral density; semireal-time commanding electrical wheelchair simulator movement; user recognition; user-friendly BCI platform; wireless EEG device; Accuracy; Arrays; Electroencephalography; Prototypes; Rhythm; Wheelchairs; Wireless communication; Electric Wheelchair; Electro-encephalography(EEG); Semi Real Time BCI;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Instrumentation Control and Automation (ICA), 2013 3rd International Conference on
Conference_Location :
Ungasan
Print_ISBN :
978-1-4673-5795-1
Type :
conf
DOI :
10.1109/ICA.2013.6734043
Filename :
6734043
Link To Document :
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