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Adaptive control of hyperbolic PDEs
~
Anfinsen, Henrik.
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Adaptive control of hyperbolic PDEs
Record Type:
Electronic resources : Monograph/item
Title/Author:
Adaptive control of hyperbolic PDEs/ by Henrik Anfinsen, Ole Morten Aamo.
Author:
Anfinsen, Henrik.
other author:
Aamo, Ole Morten.
Published:
Cham :Springer International Publishing : : 2019.,
Description:
xv, 478 p. :ill., digital ;24 cm.
[NT 15003449]:
Part I: Background -- Chapter 1. Background -- Part II: Scalar systems -- Chapter 2. Introduction -- Chapter 3. Non-adaptive schemes -- Chapter 4. Adaptive state-feedback controller -- Chapter 5. Adaptive output-feedback controller -- Chapter 6. Model reference adaptive control -- Part III: 2 × 2-systems -- Chapter 7. Introduction -- Chapter 8. Non-adaptive schemes -- Chapter 9. Adaptive state feedback controllers -- Chapter 10. Adaptive output-feedback: uncertain boundary condition -- Chapter 11. Adaptive output-feedback: uncertain in-domain parameters -- Chapter 12. Model reference adaptive control -- Part IV: n + 1-systems -- Chapter 13. Introduction -- Chapter 14. Non-adaptive schemes -- Chapter 15. Adaptive state-feedback controller -- Chapter 16. Adaptive output-feedback: uncertain boundary condition -- Chapter 17. Model reference adaptive control -- Part V: n + m-systems -- Chapter 18. Introduction -- Chapter 19. Non-adaptive schemes -- Chapter 20. Adaptive output-feedback: uncertain boundary condition -- References.
Contained By:
Springer eBooks
Subject:
Adaptive control systems. -
Online resource:
https://doi.org/10.1007/978-3-030-05879-1
ISBN:
9783030058791
Adaptive control of hyperbolic PDEs
Anfinsen, Henrik.
Adaptive control of hyperbolic PDEs
[electronic resource] /by Henrik Anfinsen, Ole Morten Aamo. - Cham :Springer International Publishing :2019. - xv, 478 p. :ill., digital ;24 cm. - Communications and control engineering,0178-5354. - Communications and control engineering..
Part I: Background -- Chapter 1. Background -- Part II: Scalar systems -- Chapter 2. Introduction -- Chapter 3. Non-adaptive schemes -- Chapter 4. Adaptive state-feedback controller -- Chapter 5. Adaptive output-feedback controller -- Chapter 6. Model reference adaptive control -- Part III: 2 × 2-systems -- Chapter 7. Introduction -- Chapter 8. Non-adaptive schemes -- Chapter 9. Adaptive state feedback controllers -- Chapter 10. Adaptive output-feedback: uncertain boundary condition -- Chapter 11. Adaptive output-feedback: uncertain in-domain parameters -- Chapter 12. Model reference adaptive control -- Part IV: n + 1-systems -- Chapter 13. Introduction -- Chapter 14. Non-adaptive schemes -- Chapter 15. Adaptive state-feedback controller -- Chapter 16. Adaptive output-feedback: uncertain boundary condition -- Chapter 17. Model reference adaptive control -- Part V: n + m-systems -- Chapter 18. Introduction -- Chapter 19. Non-adaptive schemes -- Chapter 20. Adaptive output-feedback: uncertain boundary condition -- References.
Adaptive Control of Linear Hyperbolic PDEs provides a comprehensive treatment of adaptive control of linear hyperbolic systems, using the backstepping method. It develops adaptive control strategies for different combinations of measurements and actuators, as well as for a range of different combinations of parameter uncertainty. The book treats boundary control of systems of hyperbolic partial differential equations (PDEs) with uncertain parameters. The authors develop designs for single equations, as well as any number of coupled equations. The designs are accompanied by mathematical proofs, which allow the reader to gain insight into the technical challenges associated with adaptive control of hyperbolic PDEs, and to get an overview of problems that are still open for further research. Although stabilization of unstable systems by boundary control and boundary sensing are the particular focus, state-feedback designs are also presented. The book also includes simulation examples with implementational details and graphical displays, to give readers an insight into the performance of the proposed control algorithms, as well as the computational details involved. A library of MATLAB® code supplies ready-to-use implementations of the control and estimation algorithms developed in the book, allowing readers to tailor controllers for cases of their particular interest with little effort. These implementations can be used for many different applications, including pipe flows, traffic flow, electrical power lines, and more. Adaptive Control of Linear Hyperbolic PDEs is of value to researchers and practitioners in applied mathematics, engineering and physics; it contains a rich set of adaptive control designs, including mathematical proofs and simulation demonstrations. The book is also of interest to students looking to expand their knowledge of hyperbolic PDEs.
ISBN: 9783030058791
Standard No.: 10.1007/978-3-030-05879-1doiSubjects--Topical Terms:
533905
Adaptive control systems.
LC Class. No.: TJ217 / .A545 2019
Dewey Class. No.: 629.836
Adaptive control of hyperbolic PDEs
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Part I: Background -- Chapter 1. Background -- Part II: Scalar systems -- Chapter 2. Introduction -- Chapter 3. Non-adaptive schemes -- Chapter 4. Adaptive state-feedback controller -- Chapter 5. Adaptive output-feedback controller -- Chapter 6. Model reference adaptive control -- Part III: 2 × 2-systems -- Chapter 7. Introduction -- Chapter 8. Non-adaptive schemes -- Chapter 9. Adaptive state feedback controllers -- Chapter 10. Adaptive output-feedback: uncertain boundary condition -- Chapter 11. Adaptive output-feedback: uncertain in-domain parameters -- Chapter 12. Model reference adaptive control -- Part IV: n + 1-systems -- Chapter 13. Introduction -- Chapter 14. Non-adaptive schemes -- Chapter 15. Adaptive state-feedback controller -- Chapter 16. Adaptive output-feedback: uncertain boundary condition -- Chapter 17. Model reference adaptive control -- Part V: n + m-systems -- Chapter 18. Introduction -- Chapter 19. Non-adaptive schemes -- Chapter 20. Adaptive output-feedback: uncertain boundary condition -- References.
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Adaptive Control of Linear Hyperbolic PDEs provides a comprehensive treatment of adaptive control of linear hyperbolic systems, using the backstepping method. It develops adaptive control strategies for different combinations of measurements and actuators, as well as for a range of different combinations of parameter uncertainty. The book treats boundary control of systems of hyperbolic partial differential equations (PDEs) with uncertain parameters. The authors develop designs for single equations, as well as any number of coupled equations. The designs are accompanied by mathematical proofs, which allow the reader to gain insight into the technical challenges associated with adaptive control of hyperbolic PDEs, and to get an overview of problems that are still open for further research. Although stabilization of unstable systems by boundary control and boundary sensing are the particular focus, state-feedback designs are also presented. The book also includes simulation examples with implementational details and graphical displays, to give readers an insight into the performance of the proposed control algorithms, as well as the computational details involved. A library of MATLAB® code supplies ready-to-use implementations of the control and estimation algorithms developed in the book, allowing readers to tailor controllers for cases of their particular interest with little effort. These implementations can be used for many different applications, including pipe flows, traffic flow, electrical power lines, and more. Adaptive Control of Linear Hyperbolic PDEs is of value to researchers and practitioners in applied mathematics, engineering and physics; it contains a rich set of adaptive control designs, including mathematical proofs and simulation demonstrations. The book is also of interest to students looking to expand their knowledge of hyperbolic PDEs.
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Intelligent Technologies and Robotics (Springer-42732)
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