Quantitative evaluation of predictability of linear reduced-order model based on particle-image-velocimetry data of separated flow field around airfoil
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Taku Nonomura | Keisuke Asai | Koki Nankai | Atsushi Komuro | Yuto Iwasaki | K. Asai | T. Nonomura | A. Komuro | Koki Nankai | Yuto Iwasaki
[1] Peter J. Schmid,et al. Sparsity-promoting dynamic mode decomposition , 2012, 1309.4165.
[2] P. Schmid,et al. Dynamic mode decomposition of numerical and experimental data , 2008, Journal of Fluid Mechanics.
[3] P. Goulart,et al. Optimal mode decomposition for unsteady flows , 2013, Journal of Fluid Mechanics.
[4] Jinjun Wang,et al. Dynamical mode decomposition of Gurney flap wake flow , 2011 .
[5] A. Cammilleri,et al. POD-spectral decomposition for fluid flow analysis and model reduction , 2013 .
[6] Sina Mehdizadeh,et al. A Robust Method to Estimate the Largest Lyapunov Exponent of Noisy Signals: A Revision to the Rosenstein’s Algorithm , 2018, bioRxiv.
[7] Taku Nonomura,et al. Burst-Mode Frequency Effects of Dielectric Barrier Discharge Plasma Actuator for Separation Control , 2017 .
[8] Taku Nonomura,et al. Mechanisms for laminar separated-flow control using dielectric-barrier-discharge plasma actuator at low Reynolds number , 2015 .
[9] K. Fujii,et al. Unified mechanisms for separation control around airfoil using plasma actuator with burst actuation over Reynolds number range of 103–106 , 2020 .
[10] L. Chatellier,et al. A few techniques to improve data-driven reduced-order simulations for unsteady flows , 2020 .
[11] Steven L. Brunton,et al. On dynamic mode decomposition: Theory and applications , 2013, 1312.0041.
[12] Takao Suzuki. POD-based reduced-order hybrid simulation using the data-driven transfer function with time-resolved PTV feedback , 2014 .
[13] T. Corke,et al. SDBD plasma enhanced aerodynamics: concepts, optimization and applications , 2007 .
[14] Taku Nonomura,et al. Extended-Kalman-filter-based dynamic mode decomposition for simultaneous system identification and denoising , 2018, PloS one.
[15] Uri Shaham,et al. Dynamic Mode Decomposition , 2013 .
[16] Raf Theunissen,et al. On improvement of PIV image interrogation near stationary interfaces , 2008 .
[17] Steven L. Brunton,et al. Dynamic mode decomposition - data-driven modeling of complex systems , 2016 .
[18] Steven L. Brunton,et al. Data-Driven Science and Engineering , 2019 .
[19] Mechanisms for turbulent separation control using plasma actuator at Reynolds number of 1.6 × 106 , 2019, Physics of Fluids.
[20] M. Samimy,et al. High-lift airfoil trailing edge separation control using a single dielectric barrier discharge plasma actuator , 2010 .
[21] Joel Delville,et al. Polynomial identification of POD based low-order dynamical system , 2006 .
[22] J. Nathan Kutz,et al. Variable Projection Methods for an Optimized Dynamic Mode Decomposition , 2017, SIAM J. Appl. Dyn. Syst..
[23] Vassilios Theofilis,et al. Modal Analysis of Fluid Flows: An Overview , 2017, 1702.01453.
[24] J. A. Rome,et al. Transport associated with the collisionless detrapping/retrapping orbits in a nonaxisymmetric torus , 1984 .
[25] P. Holmes,et al. The Proper Orthogonal Decomposition in the Analysis of Turbulent Flows , 1993 .
[26] Taku Nonomura,et al. Multifactorial Effects of Operating Conditions of Dielectric-Barrier-Discharge Plasma Actuator on Laminar-Separated-Flow Control , 2015 .
[27] K. Asai,et al. Multiple control modes of nanosecond-pulse-driven plasma-actuator evaluated by forces, static pressure, and PIV measurements , 2018, Experiments in Fluids.
[28] Taku Nonomura,et al. Feasibility Study on Sparse Processing Particle Image Velocimetry , 2019 .
[29] K. Fujii,et al. Plasma-Actuator Burst-Mode Frequency Effects on Leading-Edge Flow-Separation Control at Reynolds Number 2.6×105 , 2017 .
[30] Clarence W. Rowley,et al. Online dynamic mode decomposition for time-varying systems , 2017, SIAM J. Appl. Dyn. Syst..
[31] Clarence W. Rowley,et al. De-biasing the dynamic mode decomposition for applied Koopman spectral analysis of noisy datasets , 2015, Theoretical and Computational Fluid Dynamics.
[32] M. Rosenstein,et al. A practical method for calculating largest Lyapunov exponents from small data sets , 1993 .
[33] Yixin Diao,et al. First‐Order Systems , 2004 .
[34] R. Murray,et al. Model reduction for compressible flows using POD and Galerkin projection , 2004 .
[35] Daiki Matsumoto,et al. On-the-fly algorithm for Dynamic Mode Decomposition using Incremental Singular Value Decomposition and Total Least Squares , 2017, 1703.11004.
[36] I. Mezić,et al. Spectral analysis of nonlinear flows , 2009, Journal of Fluid Mechanics.
[37] Taku NONOMURA,et al. Linear Reduced-order Model Based on PIV Data of Flow Field around Airfoil , 2019, TRANSACTIONS OF THE JAPAN SOCIETY FOR AERONAUTICAL AND SPACE SCIENCES.
[38] Taku Nonomura,et al. Data-Driven Vector-Measurement-Sensor Selection Based on Greedy Algorithm , 2019, IEEE Sensors Letters.
[39] H. Sung,et al. Dynamic mode decomposition of turbulent cavity flows for self-sustained oscillations , 2011 .
[40] Onofrio Semeraro,et al. Analysis of time-resolved PIV measurements of a confined turbulent jet using POD and Koopman modes , 2012 .
[41] Robert L. Williams,et al. Linear State-Space Control Systems , 2007 .
[42] Taku Nonomura,et al. Determinant-Based Fast Greedy Sensor Selection Algorithm , 2019, IEEE Access.
[43] Clarence W. Rowley,et al. Characterizing and correcting for the effect of sensor noise in the dynamic mode decomposition , 2014, Experiments in Fluids.
[44] Hisaichi Shibata,et al. Dynamic mode decomposition using a Kalman filter for parameter estimation , 2018, AIP Advances.