Sliding Mode Based Extremum Seeking Control for Multivariable and Distributed Optimization

Sliding Mode Based Extremum Seeking Control for Multivariable and Distributed Optimization
Author: Yasser Bin Salamah
Publisher:
Total Pages:
Release: 2019
Genre: Intelligent control systems
ISBN:

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As control techniques and optimization algorithms evolve, the spectrum of potential applications also broadens. Problems that previously were deemed intractable, now become amenable to practical control and optimization methods. Today, stand-alone wind turbines have been grouped with each other to form a wind farm. Characterizing and optimizing the overall performance of a wind farm requires a new generation of control and optimization techniques. This example and other newly emerged applications reveal the necessity to extend the classical control and optimization results to address the problems that arise in complex systems. Here, we are pursuing a new theoretical advancement in the field of sliding mode control. Having its basis on previous research on the use of sliding mode control in optimization. This dissertation proposes several sliding mode based extremum seeking control schemes for multivariable and distributed optimization problems. In the first scheme, a multivariable extremum seeking via sequential search is proposed. This approach recasts the problem of multivariable extremum seeking control into a sequence of single variable problems. The approach is suitable for non-separable problems, differentiating itself from existing work in this area. We determine stability and convergence conditions from the unidimensional case and derive a sufficient condition for the multivariable scheme to converge to the vicinity of the optimal points. Practical issues in implementation are discussed and several illustrative examples are presented to show the effectiveness of the scheme and highlight its potential use. Next, a simultaneous multivariable extremum seeking control scheme is proposed. Different from the first scheme, the presented approach addresses the problem in a concurrent manner using a single sliding surface. We determine a set of sufficient conditions under which the sliding mode will take place. Then, we demonstrate the convergence of the decision variables towards the optimal points. Unlike classical sliding mode, series of sliding modes will occur until the vicinity of the maximum is attained. We investigate the applicability of the proposed scheme to the source seeking problem using a differential-drive mobile robot. A set of simulation experiments is conducted to illustrate the theoretical results, evaluate the proposed scheme and demonstrate its applicability to real-world application. Although centralized control architectures have proven to be effective for some applications in the first two chapters, decentralized control and distributed process improves the scalability of systems. For this reason, a distributed extremum seeking control is proposed. The proposed scheme finds the solution cooperatively. The main concept of this approach is to introduce a consensus algorithm to communicate the value of the cost function between the controllers. And then we interface this algorithm suitably with sliding mode extremum seeking to find the optimal solution. After analyzing the proposed scheme, the applicability of the scheme to optimize energy production in wind farms is investigated. Performance verification is conducted through a series of experiments and is compared versus several control architectures including centralized as well as non-cooperative schemes under a variety of wind conditions.

Extremum-Seeking Control and Applications

Extremum-Seeking Control and Applications
Author: Chunlei Zhang
Publisher: Springer Science & Business Media
Total Pages: 210
Release: 2011-10-26
Genre: Technology & Engineering
ISBN: 1447122240

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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 students working in control, and industrial practitioners from a variety of backgrounds: systems, automotive, aerospace, communications, semiconductor and chemical engineering.

Advanced and Optimization Based Sliding Mode Control: Theory and Applications

Advanced and Optimization Based Sliding Mode Control: Theory and Applications
Author: Antonella Ferrara
Publisher: SIAM
Total Pages: 302
Release: 2019-07-01
Genre: Mathematics
ISBN: 1611975840

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A compendium of the authors’ recently published results, this book discusses sliding mode control of uncertain nonlinear systems, with a particular emphasis on advanced and optimization based algorithms. The authors survey classical sliding mode control theory and introduce four new methods of advanced sliding mode control. They analyze classical theory and advanced algorithms, with numerical results complementing the theoretical treatment. Case studies examine applications of the algorithms to complex robotics and power grid problems. Advanced and Optimization Based Sliding Mode Control: Theory and Applications is the first book to systematize the theory of optimization based higher order sliding mode control and illustrate advanced algorithms and their applications to real problems. It presents systematic treatment of event-triggered and model based event-triggered sliding mode control schemes, including schemes in combination with model predictive control, and presents adaptive algorithms as well as algorithms capable of dealing with state and input constraints. Additionally, the book includes simulations and experimental results obtained by applying the presented control strategies to real complex systems. This book is suitable for students and researchers interested in control theory. It will also be attractive to practitioners interested in implementing the illustrated strategies. It is accessible to anyone with a basic knowledge of control engineering, process physics, and applied mathematics.

Real-Time Optimization by Extremum-Seeking Control

Real-Time Optimization by Extremum-Seeking Control
Author: Kartik B. Ariyur
Publisher: John Wiley & Sons
Total Pages: 262
Release: 2003-10-03
Genre: Mathematics
ISBN: 0471468592

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An up-close look at the theory behind and application of extremum seeking Originally developed as a method of adaptive control for hard-to-model systems, extremum seeking solves some of the same problems as today's neural network techniques, but in a more rigorous and practical way. Following the resurgence in popularity of extremum-seeking control in aerospace and automotive engineering, Real-Time Optimization by Extremum-Seeking Control presents the theoretical foundations and selected applications of this method of real-time optimization. Written by authorities in the field and pioneers in adaptive nonlinear control systems, this book presents both significant theoretic value and important practical potential. Filled with in-depth insight and expert advice, Real-Time Optimization by Extremum-Seeking Control: * Develops optimization theory from the points of dynamic feedback and adaptation * Builds a solid bridge between the classical optimization theory and modern feedback and adaptation techniques * Provides a collection of useful tools for problems in this complex area * Presents numerous applications of this powerful methodology * Demonstrates the immense potential of this methodology for future theory development and applications Real-Time Optimization by Extremum-Seeking Control is an important resource for both students and professionals in all areas of engineering-electrical, mechanical, aerospace, chemical, biomedical-and is also a valuable reference for practicing control engineers.

Real-Time Optimization by Extremum-Seeking Control

Real-Time Optimization by Extremum-Seeking Control
Author: Kartik B. Ariyur
Publisher: John Wiley & Sons
Total Pages: 254
Release: 2003-10-03
Genre: Mathematics
ISBN: 9780471468592

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An up-close look at the theory behind and application of extremum seeking Originally developed as a method of adaptive control for hard-to-model systems, extremum seeking solves some of the same problems as today's neural network techniques, but in a more rigorous and practical way. Following the resurgence in popularity of extremum-seeking control in aerospace and automotive engineering, Real-Time Optimization by Extremum-Seeking Control presents the theoretical foundations and selected applications of this method of real-time optimization. Written by authorities in the field and pioneers in adaptive nonlinear control systems, this book presents both significant theoretic value and important practical potential. Filled with in-depth insight and expert advice, Real-Time Optimization by Extremum-Seeking Control: * Develops optimization theory from the points of dynamic feedback and adaptation * Builds a solid bridge between the classical optimization theory and modern feedback and adaptation techniques * Provides a collection of useful tools for problems in this complex area * Presents numerous applications of this powerful methodology * Demonstrates the immense potential of this methodology for future theory development and applications Real-Time Optimization by Extremum-Seeking Control is an important resource for both students and professionals in all areas of engineering-electrical, mechanical, aerospace, chemical, biomedical-and is also a valuable reference for practicing control engineers.

Sliding Modes in Control and Optimization

Sliding Modes in Control and Optimization
Author: Vadim Ivanovich Utkin
Publisher: Springer
Total Pages: 286
Release: 1992
Genre: Automatic control
ISBN: 9783540535164

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The purpose of this book is to describe a new approach for the design of high-efficiency control of multi-dimensional systems operating under uncertainty conditions. It covers mathematical, control and technological aspects of discontinuous control systems. The generation of sliding modes is the basic design idea resulting in decomposition of system motion and invariancy to uncertainties in plant behaviour. Implementation of discontinuous control is natural for widely used electronic power converters with key operation.

Multi-Stage and Multi-Time Scale Feedback Control of Linear Systems with Applications to Fuel Cells

Multi-Stage and Multi-Time Scale Feedback Control of Linear Systems with Applications to Fuel Cells
Author: Verica Radisavljević-Gajić
Publisher: Springer
Total Pages: 214
Release: 2019-02-12
Genre: Technology & Engineering
ISBN: 3030103897

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This book provides a comprehensive study of multi-stage and multi-time scale design of feedback controllers for linear dynamic systems. It examines different types of controllers as can be designed for different parts of the system (subsystems) using corresponding feedback gains obtained by performing calculations (design) only with subsystem (reduced-order) matrices.The advantages of the multi-stage/multi-time scale design are presented and conditions for implementation of these controllers are established. Complete derivations and corresponding design techniques are presented for two-stage/two-time-scale, three-stage/three-time scale, and four-stage/four-time-scale systems. The techniques developed have potential applications to a large number of real physical systems. The design techniques are demonstrated on examples of mathematical models of fuel cells, especially the proton exchange membrane fuel cell.

Real-Time Optimization

Real-Time Optimization
Author: Dominique Bonvin
Publisher: MDPI
Total Pages: 255
Release: 2018-07-05
Genre: Electronic book
ISBN: 303842448X

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This book is a printed edition of the Special Issue "Real-Time Optimization" that was published in Processes

Advances in Discrete-time Sliding Mode Control

Advances in Discrete-time Sliding Mode Control
Author: Ahmadreza Argha
Publisher:
Total Pages:
Release: 2018
Genre: TECHNOLOGY & ENGINEERING
ISBN: 9781315136141

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Focusing on the design of a specific control strategy using digital computers, this book starts by explaining a new robust LMI-based (state-feedback and observer-based output-feedback) DSMC including a new scheme for sparsely distributed control. It also discusses recent investigations' output in the field of discrete-time sliding mode control (DSMC)--

Sliding Mode Control and Observation

Sliding Mode Control and Observation
Author: Yuri Shtessel
Publisher: Springer Science & Business Media
Total Pages: 369
Release: 2013-06-01
Genre: Science
ISBN: 0817648933

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The sliding mode control methodology has proven effective in dealing with complex dynamical systems affected by disturbances, uncertainties and unmodeled dynamics. Robust control technology based on this methodology has been applied to many real-world problems, especially in the areas of aerospace control, electric power systems, electromechanical systems, and robotics. Sliding Mode Control and Observation represents the first textbook that starts with classical sliding mode control techniques and progresses toward newly developed higher-order sliding mode control and observation algorithms and their applications. The present volume addresses a range of sliding mode control issues, including: *Conventional sliding mode controller and observer design *Second-order sliding mode controllers and differentiators *Frequency domain analysis of conventional and second-order sliding mode controllers *Higher-order sliding mode controllers and differentiators *Higher-order sliding mode observers *Sliding mode disturbance observer based control *Numerous applications, including reusable launch vehicle and satellite formation control, blood glucose regulation, and car steering control are used as case studies Sliding Mode Control and Observation is aimed at graduate students with a basic knowledge of classical control theory and some knowledge of state-space methods and nonlinear systems, while being of interest to a wider audience of graduate students in electrical/mechanical/aerospace engineering and applied mathematics, as well as researchers in electrical, computer, chemical, civil, mechanical, aeronautical, and industrial engineering, applied mathematicians, control engineers, and physicists. Sliding Mode Control and Observation provides the necessary tools for graduate students, researchers and engineers to robustly control complex and uncertain nonlinear dynamical systems. Exercises provided at the end of each chapter make this an ideal text for an advanced course taught in control theory.