학술논문

A Review on Nonlinear Methods Using Electroencephalographic Recordings for Emotion Recognition
Document Type
Periodical
Source
IEEE Transactions on Affective Computing IEEE Trans. Affective Comput. Affective Computing, IEEE Transactions on. 12(3):801-820 Sep, 2021
Subject
Computing and Processing
Robotics and Control Systems
Signal Processing and Analysis
Electroencephalography
Emotion recognition
Electrodes
Complexity theory
Time series analysis
Distance measurement
Electroencephalogram
emotion recognition
nonlinear metrics
survey
Language
ISSN
1949-3045
2371-9850
Abstract
Electroencephalographic (EEG) recordings are receiving growing attention in the field of emotion recognition, since they monitor the brain’s first response to an external stimulus. Traditionally, EEG signals have been studied from a linear viewpoint by means of statistical and frequency features. Nevertheless, given that the brain follows a completely nonlinear and nonstationary behavior, linear metrics present certain important limitations. In this sense, the use of nonlinear methods has recently revealed new information that may help to understand how the brain works under a series of emotional states. Hence, this paper summarizes the most recent works that have applied nonlinear methods in EEG signal analysis for emotion recognition. This paper also identifies some nonlinear indices that have not been employed yet in this research area.