Machine Learning Control – Taming Nonlinear Dynamics and Turbulence
Book information
Description
This is the first textbook on a generally applicable control strategy for turbulence and other complex nonlinear systems. The approach of the book employs powerful methods of machine learning for optimal nonlinear control laws. This machine learning control (MLC) is motivated and detailed in Chapters 1 and 2. In Chapter 3, methods of linear control theory are reviewed. In Chapter 4, MLC is shown to reproduce known optimal control laws for linear dynamics (LQR, LQG). In Chapter 5, MLC detects and exploits a strongly nonlinear actuation mechanism of a low-dimensional dynamical system when linear control methods are shown to fail. Experimental control demonstrations from a laminar shear-layer to turbulent boundary-layers are reviewed in Chapter 6, followed by general good practices for experiments in Chapter 7. The book concludes with an outlook on the vast future applications of MLC in Chapter 8. Matlab codes are provided for easy reproducibility of the presented results. The book includes interviews with leading researchers in turbulence control (S. Bagheri, B. Batten, M. Glauser, D. Williams) and machine learning (M. Schoenauer) for a broader perspective. All chapters have exercises and supplemental videos will be available through YouTube.
Similar books
Data-Driven Fluid Mechanics. Combining First Principles and Machine Learning
2023 · PDF
Machine Learning Control – Taming Nonlinear Dynamics and Turbulence
2017 · PDF
Data Driven Science & Engineering
2017 · PDF
Data-Driven Science and Engineering: Machine Learning, Dynamical Systems, and Control 2nd Edition, Kindle Edition
2022 · PDF
Data-Driven Science and Engineering: Machine Learning, Dynamical Systems, and Control
2019 · PDF
Data-Driven Science and Engineering: Machine Learning, Dynamical Systems, and Control
2019 · PDF
Dynamic Mode Decomposition: Data-Driven Modeling of Complex Systems
2016 · PDF
Reduced-Order Modelling for Flow Control
2011 · PDF