Multiscale limited penetrable horizontal visibility graph for analyzing nonlinear time series

Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to d...

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Published inScientific reports Vol. 6; no. 1; p. 35622
Main Authors Gao, Zhong-Ke, Cai, Qing, Yang, Yu-Xuan, Dang, Wei-Dong, Zhang, Shan-Shan
Format Journal Article
LanguageEnglish
Published London Nature Publishing Group UK 19.10.2016
Nature Publishing Group
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Online AccessGet full text
ISSN2045-2322
2045-2322
DOI10.1038/srep35622

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Abstract Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to demonstrate the effectiveness of our method. Combining MLPHVG and support vector machine, we detect epileptic seizures from the EEG signals recorded from healthy subjects and epilepsy patients and the classification accuracy is 100%. In addition, we derive MLPHVGs from oil-water two-phase flow signals and find that the average clustering coefficient at different scales allows faithfully identifying and characterizing three typical oil-water flow patterns. These findings render our MLPHVG method particularly useful for analyzing nonlinear time series from the perspective of multiscale network analysis.
AbstractList Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to demonstrate the effectiveness of our method. Combining MLPHVG and support vector machine, we detect epileptic seizures from the EEG signals recorded from healthy subjects and epilepsy patients and the classification accuracy is 100%. In addition, we derive MLPHVGs from oil-water two-phase flow signals and find that the average clustering coefficient at different scales allows faithfully identifying and characterizing three typical oil-water flow patterns. These findings render our MLPHVG method particularly useful for analyzing nonlinear time series from the perspective of multiscale network analysis.
Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to demonstrate the effectiveness of our method. Combining MLPHVG and support vector machine, we detect epileptic seizures from the EEG signals recorded from healthy subjects and epilepsy patients and the classification accuracy is 100%. In addition, we derive MLPHVGs from oil-water two-phase flow signals and find that the average clustering coefficient at different scales allows faithfully identifying and characterizing three typical oil-water flow patterns. These findings render our MLPHVG method particularly useful for analyzing nonlinear time series from the perspective of multiscale network analysis.
Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to demonstrate the effectiveness of our method. Combining MLPHVG and support vector machine, we detect epileptic seizures from the EEG signals recorded from healthy subjects and epilepsy patients and the classification accuracy is 100%. In addition, we derive MLPHVGs from oil-water two-phase flow signals and find that the average clustering coefficient at different scales allows faithfully identifying and characterizing three typical oil-water flow patterns. These findings render our MLPHVG method particularly useful for analyzing nonlinear time series from the perspective of multiscale network analysis.Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal visibility graph (MLPHVG). We use nonlinear time series from two typical complex systems, i.e., EEG signals and two-phase flow signals, to demonstrate the effectiveness of our method. Combining MLPHVG and support vector machine, we detect epileptic seizures from the EEG signals recorded from healthy subjects and epilepsy patients and the classification accuracy is 100%. In addition, we derive MLPHVGs from oil-water two-phase flow signals and find that the average clustering coefficient at different scales allows faithfully identifying and characterizing three typical oil-water flow patterns. These findings render our MLPHVG method particularly useful for analyzing nonlinear time series from the perspective of multiscale network analysis.
ArticleNumber 35622
Author Gao, Zhong-Ke
Dang, Wei-Dong
Zhang, Shan-Shan
Yang, Yu-Xuan
Cai, Qing
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  givenname: Zhong-Ke
  surname: Gao
  fullname: Gao, Zhong-Ke
  organization: School of Electrical Engineering and Automation, Tianjin University
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  givenname: Qing
  surname: Cai
  fullname: Cai, Qing
  organization: School of Electrical Engineering and Automation, Tianjin University
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  givenname: Yu-Xuan
  surname: Yang
  fullname: Yang, Yu-Xuan
  organization: School of Electrical Engineering and Automation, Tianjin University
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  givenname: Wei-Dong
  surname: Dang
  fullname: Dang, Wei-Dong
  organization: School of Electrical Engineering and Automation, Tianjin University
– sequence: 5
  givenname: Shan-Shan
  surname: Zhang
  fullname: Zhang, Shan-Shan
  organization: School of Electrical Engineering and Automation, Tianjin University
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Snippet Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal...
Visibility graph has established itself as a powerful tool for analyzing time series. We in this paper develop a novel multiscale limited penetrable horizontal...
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639/766/530/2803
Classification
Convulsions & seizures
EEG
Epilepsy
Humanities and Social Sciences
multidisciplinary
Multiphase flow
Science
Seizures
Time series
Water flow
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Title Multiscale limited penetrable horizontal visibility graph for analyzing nonlinear time series
URI https://link.springer.com/article/10.1038/srep35622
https://www.ncbi.nlm.nih.gov/pubmed/27759088
https://www.proquest.com/docview/1899112507
https://www.proquest.com/docview/1835490107
https://pubmed.ncbi.nlm.nih.gov/PMC5069474
https://www.nature.com/articles/srep35622.pdf
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