Amanote Research
Register
Sign In
Distinguishing Quasiperiodic Dynamics From Chaos in Short-Time Series
Physical Review E
doi 10.1103/physreve.76.016210
Full Text
Open PDF
Abstract
Available in
full text
Date
July 13, 2007
Authors
Y. Zou
D. Pazó
M. C. Romano
M. Thiel
J. Kurths
Publisher
American Physical Society (APS)
Related search
Distinguishing Dynamics Using Recurrence-Time Statistics
Physical Review E
From Quasiperiodic Partial Synchronization to Collective Chaos in Populations of Inhibitory Neurons With Delay
Physical Review Letters
Astronomy
Physics
Learning Dynamics From Nonstationary Time Series: Analysis of Electroencephalograms
Physical Review E
Application of Chaos Game Representation to Nonlinear Time Series Analysis
Fractals
Geometry
Applied Mathematics
Multidisciplinary
Simulation
Modeling
Topology
Extracting Biologically Significant Patterns From Short Time Series Gene Expression Data
BMC Bioinformatics
Biochemistry
Applied Mathematics
Computer Science Applications
Structural Biology
Molecular Biology
Lyapunov Exponent Corresponding to Enslaved Phase Dynamics: Estimation From Time Series
Physical Review E
Time-Quasiperiodic Topological Superconductors With Majorana Multiplexing
Physical Review B
Optical
Electronic
Condensed Matter Physics
Magnetic Materials
Distinguishing Trees in Linear Time
Electronic Journal of Combinatorics
Combinatorics
Applied Mathematics
Mathematics
Geometry
Discrete Mathematics
Computational Theory
Topology
Theoretical Computer Science
Distinguishing Motor Starts From Short Circuits Through Phase-Angle Measurements
IEEE Transactions on Industry Applications
Control
Systems Engineering
Industrial
Electronic Engineering
Manufacturing Engineering
Electrical