Extremum-Seeking Control and Applications: A Numerical Optimization-Based Approach

Author:   Chunlei Zhang ,  Raúl Ordóñez
Publisher:   Springer London Ltd
Edition:   Softcover reprint of the original 1st ed. 2012
ISBN:  

9781447169468


Pages:   201
Publication Date:   23 August 2016
Format:   Paperback
Availability:   Manufactured on demand   Availability explained
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Extremum-Seeking Control and Applications: A Numerical Optimization-Based Approach


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Overview

Extremum-seeking control tracks a varying maximum or minimum in a performance function such as output or cost. It attempts to determine the optimal performance of a control system as it operates, thereby reducing downtime and the need for system analysis. Extremum-seeking Control and Applications is divided into two parts. In the first, the authors review existing analog-optimization-based extremum-seeking control including gradient-, perturbation- and sliding-mode-based control designs. They then propose a novel numerical-optimization-based extremum-seeking control based on optimization algorithms and state regulation. This control design is developed for simple linear time-invariant systems and then extended for a class of feedback linearizable nonlinear systems. The two main optimization algorithms – line search and trust region methods – are analyzed for robustness. Finite-time and asymptotic state regulators are put forward for linear and nonlinear systems respectively. Further design flexibility is achieved using the robustness results of the optimization algorithms and the asymptotic state regulator by which existing nonlinear adaptive control techniques can be introduced for robust design. The approach used is easier to implement and tends to be more robust than those that use perturbation-based extremum-seeking control. The second part of the book deals with a variety of applications of extremum-seeking control: a comparative study of extremum-seeking control schemes in antilock braking system design; source seeking, formation control, collision and obstacle avoidance for groups of autonomous agents; mobile radar networks; and impedance matching. MATLAB®/Simulink® code which can be downloaded from www.springer.com/ISBN helps readers to reproduce the results presented in the text and gives them a head start for implementing the algorithms in their own applications. Extremum-seeking Control and Applications will interest academics and graduate studentsworking in control, and industrial practitioners from a variety of backgrounds: systems, automotive, aerospace, communications, semiconductor and chemical engineering.

Full Product Details

Author:   Chunlei Zhang ,  Raúl Ordóñez
Publisher:   Springer London Ltd
Imprint:   Springer London Ltd
Edition:   Softcover reprint of the original 1st ed. 2012
Weight:   0.472kg
ISBN:  

9781447169468


ISBN 10:   1447169468
Pages:   201
Publication Date:   23 August 2016
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Manufactured on demand   Availability explained
We will order this item for you from a manufactured on demand supplier.

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Reviews

From the reviews: The monograph is divided into two parts. In the first, the authors review existing analog-optimization-based ESC ... . The second part of the book deals with applications of ESC ... . The book will be of benefit to graduate students persuing their degrees in applied and industrial mathematics, as well as to researchers and engineers who may encounter optimal control methods in their work. (Mikhail Yu Kokurin, Zentralblatt MATH, Vol. 1255, 2013)


From the reviews: The monograph is divided into two parts. In the first, the authors review existing analog-optimization-based ESC ... . The second part of the book deals with applications of ESC ... . The book will be of benefit to graduate students persuing their degrees in applied and industrial mathematics, as well as to researchers and engineers who may encounter optimal control methods in their work. (Mikhail Yu Kokurin, Zentralblatt MATH, Vol. 1255, 2013)


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