Early Detection of Thermoacoustic Combustion Instability Using a Methodology Combining Complex Networks and Machine Learning
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Tsubasa Kobayashi | Hiroshi Gotoda | Takayoshi Hachijo | Shogo Murayama | H. Gotoda | Takayoshi Hachijo | Tsubasa Kobayashi | S. Murayama
[1] R. Sujith,et al. Intermittency route to thermoacoustic instability in turbulent combustors , 2014, Journal of Fluid Mechanics.
[2] H. Gotoda,et al. Nonlinear determinism in degenerated combustion instability in a gas-turbine model combustor , 2018, Physica A: Statistical Mechanics and its Applications.
[3] Vishnu R Unni,et al. Pattern formation during transition from combustion noise to thermoacoustic instability via intermittency , 2018, Journal of Fluid Mechanics.
[4] Michael Small,et al. Time lagged ordinal partition networks for capturing dynamics of continuous dynamical systems. , 2015, Chaos.
[5] Isao T Tokuda,et al. Characterization and detection of thermoacoustic combustion oscillations based on statistical complexity and complex-network theory. , 2018, Physical review. E.
[6] Alex Arenas,et al. Paths to synchronization on complex networks. , 2006, Physical review letters.
[7] B. Pompe,et al. Permutation entropy: a natural complexity measure for time series. , 2002, Physical review letters.
[8] Vishnu R Unni,et al. Onset of thermoacoustic instability in turbulent combustors: an emergence of synchronized periodicity through formation of chimera-like states , 2016, Journal of Fluid Mechanics.
[9] Larry K. B. Li,et al. Strange nonchaotic and chaotic attractors in a self-excited thermoacoustic oscillator subjected to external periodic forcing. , 2018, Chaos.
[10] Matthew P. Juniper,et al. Sensitivity and Nonlinearity of Thermoacoustic Oscillations , 2018 .
[11] R. I. Sujith,et al. Multifractality in combustion noise: predicting an impending combustion instability , 2014, Journal of Fluid Mechanics.
[12] Vladimir Vapnik,et al. An overview of statistical learning theory , 1999, IEEE Trans. Neural Networks.
[13] S. Yoshida,et al. Dynamic behavior of combustion instability in a cylindrical combustor with an off-center installed coaxial injector. , 2018, Chaos.
[14] R. I. Sujith,et al. Combustion noise is scale-free: transition from scale-free to order at the onset of thermoacoustic instability , 2015, Journal of Fluid Mechanics.
[15] S. Yoshida,et al. Detection of frequency-mode-shift during thermoacoustic combustion oscillations in a staged aircraft engine model combustor , 2017 .
[16] Tetsushi Biwa,et al. Amplitude Death in Coupled Thermoacoustic Oscillators , 2015 .
[17] Vishnu R Unni,et al. Multifractal characteristics of combustor dynamics close to lean blowout , 2015, Journal of Fluid Mechanics.
[18] J. Kurths,et al. Coupled interaction between unsteady flame dynamics and acoustic field in a turbulent combustor. , 2018, Chaos.
[19] Hiroshi Gotoda,et al. Characterization of Combustion Dynamics, Detection, and Prevention of an Unstable Combustion State Based on a Complex-Network Theory , 2017 .
[20] Michael Small,et al. Dynamics of self-excited thermoacoustic instability in a combustion system: Pseudo-periodic and high-dimensional nature. , 2015, Chaos.
[21] H. Gotoda,et al. Attenuation behavior of thermoacoustic combustion instability analyzed by a complex-network- and synchronization-based approach. , 2019, Physical review. E.
[22] L. Zunino,et al. Discriminating chaotic and stochastic dynamics through the permutation spectrum test. , 2014, Chaos.
[23] Michael Small,et al. Constructing ordinal partition transition networks from multivariate time series , 2017, Scientific Reports.
[24] Jürgen Kurths,et al. Recurrence plots for the analysis of complex systems , 2009 .
[25] Tetsushi Biwa,et al. Low temperature differential thermoacoustic Stirling engine , 2010 .
[26] R. Sujith,et al. Detecting the Onset of an Impending Thermoacoustic Instability Using Complex Networks , 2016 .
[27] Tetsushi Biwa,et al. Measurements of acoustic streaming in a looped-tube thermoacoustic engine with a jet pump , 2007 .
[28] V. Yang,et al. Dynamics and stability of lean-premixed swirl-stabilized combustion , 2009 .