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Detecting dynamical changes in time series using the permutation entropy

Physical Review E · 2004 · Vol. 70(4) · pp. 046217–046217
Yinping CaoWen‐wen TungJianbo GaoV. ProtopopescuL.M. Hively

Abstract

Timely detection of unusual and/or unexpected events in natural and man-made systems has deep scientific and practical relevance. We show that the recently proposed conceptually simple and easily calculated measure of permutation entropy can be effectively used to detect qualitative and quantitative dynamical changes. We illustrate our results on two model systems as well as on clinically characterized brain wave data from epileptic patients.

Complex Systems and Time Series AnalysisFractal and DNA sequence analysisNeural dynamics and brain functionDynamical systems theoryStatistical physicsTransfer entropyComputer scienceEntropy (arrow of time)Series (stratigraphy)Permutation (music)Time seriesRelevance (law)Algorithm

Funding

  • U.S. Department of Energy
  • University of Florida
  • Division of Materials Sciences and Engineering
Citations
535
FWCI
20.09
field-weighted impact
References
35
Percentile
99%
vs. same field & year
Citations per year
References
Geometry from a Time Series
Physical Review Letters · 1980 · 3,850 citations
Permutation Entropy: A Natural Complexity Measure for Time Series
Physical Review Letters · 2002 · 4,663 citations
Recurrence Plots of Dynamical Systems
Europhysics Letters (EPL) · 1987 · 3,206 citations
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