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ThinkMind // INTELLI 2013, The Second International Conference on Intelligent Systems and Applications // View article intelli_2013_4_30_80181


Physiological Signals and Classification for Happiness, Neural and Surprise Emotions

Authors:
Eun-Hye Jang
Sang-Hyeob Kim
Chul Huh
Myoung-Ae Chung

Keywords: Emotion classification, Physiological signals, Machine learning

Abstract:
In this study, we discuss the comparative results of emotion classification by several algorithms, which classify three different emotional states (happiness, neutral, and surprise) using physiological features. 300 students participated in this experiment. While three kinds of emotional stimuli are presented to participants, physiological signal responses (EDA, SKT, ECG, RESP, and PPG) were measured. Participants rated their own feelings to emotional stimuli on emotional assessment scale after presentation of emotional stimuli. The emotional stimuli had 96% validity and 5.8 point efficiency on average. There were significant differences of autonomic nervous system responses among three emotions by statistical analysis. The classification of three differential emotions was carried out by Fisher's linear discriminant (FLD), Support Vector Machine (SVM), and Neural Networks (NN) using difference value, which subtracts baseline from emotional state. The result of FLD showed that the accuracy of classification in three different emotions was 77.3%. 72.3% and 42.3% have obtained as the accuracy of classification by SVM and NN, respectively. This study confirmed that the three emotions can be better classified by FLD using various physiological features than SVM and NN. Further study may need to get those results to obtain more stability and reliability, as comparing with the accuracy of emotions classification by using other algorithms.

Pages: 79 to 82

Copyright: Copyright (c) IARIA, 2013

Publication date: April 21, 2013

Published in: conference

ISSN: 2308-4065

ISBN: 978-1-61208-269-1

Location: Venice, Italy

Dates: from April 21, 2013 to April 26, 2013

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