Title
Multiplex Limited Penetrable Horizontal Visibility Graph From Eeg Signals For Driver Fatigue Detection
Abstract
Driver fatigue is an important contributor to road accidents, and driver fatigue detection has attracted a great deal of attention on account of its significant importance. Numerous methods have been proposed to fulfill this challenging task, though, the characterization of the fatigue mechanism still, to a large extent, remains to be investigated. To address this problem, we, in this work, develop a novel Multiplex Limited Penetrable Horizontal Visibility Graph (Multiplex LPHVG) method, which allows in not only detecting fatigue driving but also probing into the brain fatigue behavior. Importantly, we use the method to construct brain networks from EEG signals recorded from different subjects performing simulated driving tasks under alert and fatigue driving states. We then employ clustering coefficient, global efficiency and characteristic path length to characterize the topological structure of the networks generated from different brain states. In addition, we combine average edge overlap with the network measures to distinguish alert and mental fatigue states. The high-accurate classification results clearly demonstrate and validate the efficacy of our multiplex LPHVG method for the fatigue detection from EEG signals. Furthermore, our findings show a significant increase of the clustering coefficient as the brain evolves from alert state to mental fatigue state, which yields novel insights into the brain behavior associated with fatigue driving.
Year
DOI
Venue
2019
10.1142/S0129065718500570
INTERNATIONAL JOURNAL OF NEURAL SYSTEMS
Keywords
Field
DocType
Multiplex limited penetrable horizontal visibility graph, EEG, brain network, driver fatigue detection
Brain network,Synchronization,Visibility graph,Pattern recognition,Computer science,Multiplex,Artificial intelligence,Electroencephalography
Journal
Volume
Issue
ISSN
29
5
0129-0657
Citations 
PageRank 
References 
1
0.34
23
Authors
5
Name
Order
Citations
PageRank
qing cai1608.64
Zhongke Gao2598.79
Yuxuan Yang3635.78
Wei-Dong Dang4133.24
Celso Grebogi512734.41